{"id":8637,"date":"2021-05-08T13:59:10","date_gmt":"2017-05-08T13:59:12","guid":{"rendered":"https:\/\/aiguasol.coop\/energy-software\/trnsys-18-simulacion-energetica\/"},"modified":"2024-04-16T09:54:25","modified_gmt":"2024-04-16T09:54:25","slug":"trnsys-18-simulacio-de-sistemes-energetics","status":"publish","type":"product","link":"https:\/\/aiguasol.coop\/ca\/software-energia\/trnsys-18-simulacio-de-sistemes-energetics\/","title":{"rendered":"Trnsys 18 &#8211; Simulaci\u00f3 energ\u00e8tica"},"content":{"rendered":"<div class=\"wpb-content-wrapper\"><p>[vc_row row_height_percent=\u00bb58&#8243; override_padding=\u00bbyes\u00bb h_padding=\u00bb2&#8243; top_padding=\u00bb5&#8243; bottom_padding=\u00bb5&#8243; overlay_alpha=\u00bb100&#8243; gutter_size=\u00bb100&#8243; shift_y=\u00bb0&#8243; style=\u00bbdark\u00bb row_name=\u00bbDesign &amp; Quality\u00bb][vc_column column_width_use_pixel=\u00bbyes\u00bb position_vertical=\u00bbbottom\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb100&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; zoom_width=\u00bb0&#8243; zoom_height=\u00bb0&#8243; width=\u00bb1\/3&#8243; column_width_pixel=\u00bb800&#8243;][vc_single_image media=\u00bb7810&#8243; media_width_percent=\u00bb100&#8243; alignment=\u00bbcenter\u00bb][\/vc_column][vc_column column_width_percent=\u00bb70&#8243; position_vertical=\u00bbmiddle\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb2\/3&#8243;][vc_custom_heading text_size=\u00bb\u00bb separator=\u00bbyes\u00bb sub_reduced=\u00bbyes\u00bb subheading=\u00bbTRNSYS \u00e9s un entorn de software basat en gr\u00e0fics extremadament flexible que s&#8217;utilitza per simular el comportament de sistemes transitoris. La gran majoria de simulacions es centren en avaluar el rendiment dels sistemes d&#8217;energia t\u00e8rmica i el\u00e8ctrica.\u00bb uncode_shortcode_id=\u00bb108432&#8243;]TRNSYS[\/vc_custom_heading][vc_column_text uncode_shortcode_id=\u00bb925862&#8243;]<span class=\"destacat\"><a href=\"https:\/\/s3-eu-west-1.amazonaws.com\/aiguasol\/software-public\/trnsys_18_demo.zip\" target=\"_blank\" rel=\"noopener noreferrer\">Descarrega la DEMO<\/a><\/span>[\/vc_column_text][vc_column_text uncode_shortcode_id=\u00bb176818&#8243;]<span class=\"destacat-2\"><a href=\"https:\/\/aiguasol.coop\/wp-content\/uploads\/2017\/05\/TRNSYS18_0_updates.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">Novetats a TRNSYS 18<\/a><\/span>[\/vc_column_text][\/vc_column][\/vc_row][vc_row row_height_percent=\u00bb0&#8243; override_padding=\u00bbyes\u00bb h_padding=\u00bb2&#8243; top_padding=\u00bb3&#8243; bottom_padding=\u00bb2&#8243; back_color=\u00bbcolor-lxmt\u00bb overlay_alpha=\u00bb50&#8243; gutter_size=\u00bb3&#8243; shift_y=\u00bb0&#8243;][vc_column column_width_use_pixel=\u00bbyes\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/1&#8243; column_width_pixel=\u00bb800&#8243; css=\u00bb.vc_custom_1459278047483{border-bottom-width: 0px !important;padding-bottom: 0px !important;}\u00bb][vc_custom_heading separator=\u00bbyes\u00bb separator_color=\u00bbyes\u00bb subheading=\u00bbA causa de l&#8217;\u00e0mplia base d&#8217;usuaris, la llarga hist\u00f2ria de l&#8217;eina i la seva flexibilitat inherent, s&#8217;est\u00e0 utilitzant activament en moltes de les aplicacions seg\u00fcents:\u00bb uncode_shortcode_id=\u00bb612407&#8243;]APLICACIONS[\/vc_custom_heading][\/vc_column][\/vc_row][vc_row row_height_percent=\u00bb0&#8243; back_color=\u00bbcolor-lxmt\u00bb overlay_alpha=\u00bb50&#8243; gutter_size=\u00bb3&#8243; shift_y=\u00bb0&#8243;][vc_column column_width_percent=\u00bb100&#8243; position_vertical=\u00bbmiddle\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/4&#8243;][vc_icon icon_image=\u00bb2506&#8243; text_size=\u00bbh6&#8243; title=\u00bbSIMULACI\u00d3 ENERG\u00c8TICA D&#8217;EDIFICIS\u00bb el_class=\u00bbsys-app-ico\u00bb uncode_shortcode_id=\u00bb128774&#8243;][\/vc_icon][\/vc_column][vc_column column_width_percent=\u00bb100&#8243; position_vertical=\u00bbmiddle\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/4&#8243;][vc_icon icon_image=\u00bb11802&#8243; text_size=\u00bbh6&#8243; title=\u00bbPROCESSOS D&#8217;ENERGIA SOLAR T\u00c8RMICA\u00bb el_class=\u00bbsys-app-ico\u00bb uncode_shortcode_id=\u00bb108511&#8243;][\/vc_icon][\/vc_column][vc_column column_width_percent=\u00bb100&#8243; position_vertical=\u00bbmiddle\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/4&#8243;][vc_icon icon_image=\u00bb11793&#8243; text_size=\u00bbh6&#8243; title=\u00bbTRANSFER\u00c8NCIA DE CALOR ACOPLADA A TERRA\u00bb el_class=\u00bbsys-app-ico\u00bb uncode_shortcode_id=\u00bb445144&#8243;][\/vc_icon][\/vc_column][vc_column column_width_percent=\u00bb100&#8243; position_vertical=\u00bbmiddle\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/4&#8243;][vc_icon icon_image=\u00bb11805&#8243; text_size=\u00bbh6&#8243; title=\u00bbSOLAR T\u00c8RMICA D&#8217;ALTA TEMPERATURA\u00bb el_class=\u00bbsys-app-ico\u00bb uncode_shortcode_id=\u00bb389455&#8243;][\/vc_icon][\/vc_column][\/vc_row][vc_row row_height_percent=\u00bb0&#8243; back_color=\u00bbcolor-lxmt\u00bb overlay_alpha=\u00bb50&#8243; gutter_size=\u00bb3&#8243; shift_y=\u00bb0&#8243;][vc_column column_width_percent=\u00bb100&#8243; position_vertical=\u00bbmiddle\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/4&#8243;][vc_icon icon_image=\u00bb11790&#8243; text_size=\u00bbh6&#8243; title=\u00bbBOMBES DE CALOR GEOT\u00c8RMIQUES\u00bb el_class=\u00bbsys-app-ico\u00bb uncode_shortcode_id=\u00bb151774&#8243;][\/vc_icon][\/vc_column][vc_column column_width_percent=\u00bb100&#8243; position_vertical=\u00bbmiddle\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/4&#8243;][vc_icon icon_image=\u00bb11781&#8243; text_size=\u00bbh6&#8243; title=\u00bbMODELITZACI\u00d3 DE FLUX D&#8217;AIRE ACOBLAT\u00bb el_class=\u00bbsys-app-ico\u00bb uncode_shortcode_id=\u00bb162257&#8243;][\/vc_icon][\/vc_column][vc_column column_width_percent=\u00bb100&#8243; position_vertical=\u00bbmiddle\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/4&#8243;][vc_icon icon_image=\u00bb11799&#8243; text_size=\u00bbh6&#8243; title=\u00bbRECERCA EN SISTEMES ENERG\u00c8TICS\u00bb el_class=\u00bbsys-app-ico\u00bb uncode_shortcode_id=\u00bb210657&#8243;][\/vc_icon][\/vc_column][vc_column column_width_percent=\u00bb100&#8243; position_vertical=\u00bbmiddle\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/4&#8243;][vc_icon icon=\u00bbfa fa-check-circle\u00bb size=\u00bbfa-3x\u00bb text_size=\u00bbh6&#8243; title=\u00bbASSESSORAMENT TECNOL\u00d2GIC\u00bb el_class=\u00bbsys-app-ico\u00bb uncode_shortcode_id=\u00bb157697&#8243;][\/vc_icon][\/vc_column][\/vc_row][vc_row row_height_percent=\u00bb0&#8243; override_padding=\u00bbyes\u00bb h_padding=\u00bb2&#8243; top_padding=\u00bb2&#8243; bottom_padding=\u00bb3&#8243; back_color=\u00bbcolor-lxmt\u00bb overlay_alpha=\u00bb50&#8243; gutter_size=\u00bb3&#8243; shift_y=\u00bb0&#8243;][vc_column column_width_percent=\u00bb100&#8243; position_vertical=\u00bbmiddle\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/4&#8243;][vc_icon icon_image=\u00bb11787&#8243; text_size=\u00bbh6&#8243; title=\u00bbPLANTES D&#8217;ENERGIA\u00bb el_class=\u00bbsys-app-ico-chp\u00bb uncode_shortcode_id=\u00bb129495&#8243;][\/vc_icon][\/vc_column][vc_column column_width_percent=\u00bb100&#8243; position_vertical=\u00bbmiddle\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/4&#8243;][vc_icon icon_image=\u00bb11796&#8243; text_size=\u00bbh6&#8243; title=\u00bbPILES DE COMBUSTIBLE D&#8217;HIDR\u00d2GEN\u00bb el_class=\u00bbsys-app-ico\u00bb uncode_shortcode_id=\u00bb109191&#8243;][\/vc_icon][\/vc_column][vc_column column_width_percent=\u00bb100&#8243; position_vertical=\u00bbmiddle\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/4&#8243;][vc_icon icon_image=\u00bb11808&#8243; text_size=\u00bbh6&#8243; title=\u00bbSISTEMES E\u00d2LICS I FOTOVOLTAICS\u00bb el_class=\u00bbsys-app-ico\u00bb uncode_shortcode_id=\u00bb585589&#8243;][\/vc_icon][\/vc_column][vc_column column_width_percent=\u00bb100&#8243; position_vertical=\u00bbmiddle\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/4&#8243;][vc_icon icon_image=\u00bb11784&#8243; text_size=\u00bbh6&#8243; title=\u00bbCALIBRACI\u00d3 DE SISTEMES\u00bb el_class=\u00bbsys-app-ico\u00bb uncode_shortcode_id=\u00bb492920&#8243;][\/vc_icon][\/vc_column][\/vc_row][vc_row row_height_percent=\u00bb0&#8243; back_color=\u00bbcolor-lxmt\u00bb overlay_alpha=\u00bb50&#8243; gutter_size=\u00bb3&#8243; shift_y=\u00bb0&#8243;][vc_column width=\u00bb1\/1&#8243;][vc_message message_color=\u00bbcolor-zsdf\u00bb el_class=\u00bbas-notice\u00bb uncode_shortcode_id=\u00bb195387&#8243; message_color_type=\u00bbuncode-palette\u00bb]TRNSYS Educacional<\/p>\n<p>Hi ha una versi\u00f3 educacional de TRNSYS per a universitats. Aquesta llic\u00e8ncia est\u00e0 dissenyada per oferir formaci\u00f3 i est\u00e0 prohibit l&#8217;\u00fas comercial. Si us plau, poseu-vos en contacte amb nosaltres si teniu preguntes sobre l&#8217;\u00fas de la llic\u00e8ncia.[\/vc_message][\/vc_column][\/vc_row][vc_row row_height_percent=\u00bb0&#8243; override_padding=\u00bbyes\u00bb h_padding=\u00bb2&#8243; top_padding=\u00bb3&#8243; bottom_padding=\u00bb2&#8243; overlay_alpha=\u00bb50&#8243; gutter_size=\u00bb3&#8243; shift_y=\u00bb0&#8243;][vc_column width=\u00bb1\/3&#8243;][vc_single_image media=\u00bb5945&#8243; media_width_use_pixel=\u00bbyes\u00bb alignment=\u00bbcenter\u00bb media_width_pixel=\u00bb128&#8243;][\/vc_column][vc_column column_width_percent=\u00bb70&#8243; position_horizontal=\u00bbleft\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb2\/3&#8243;][vc_custom_heading subheading=\u00bb\u00c9s una eina de refer\u00e8ncia per a les qualificacions SRCC als EUA i apareix a la normativa de la UE per a sistemes solars (ENV 12977-2). Per a aplicacions en edificis, TRNSYS est\u00e0 en l\u00ednia amb ASHRAE 140, ASHRAE 90.1 i la directiva de la UE sobre efici\u00e8ncia energ\u00e8tica. TRNSYS es pot utilitzar per als cr\u00e8dits d&#8217;energia en el proc\u00e9s de certificaci\u00f3 LEED.\u00bb uncode_shortcode_id=\u00bb989036&#8243;]Complint amb la normativa[\/vc_custom_heading][\/vc_column][\/vc_row][vc_row row_height_percent=\u00bb0&#8243; override_padding=\u00bbyes\u00bb h_padding=\u00bb2&#8243; top_padding=\u00bb2&#8243; bottom_padding=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; gutter_size=\u00bb3&#8243; shift_y=\u00bb0&#8243;][vc_column width=\u00bb1\/3&#8243;][vc_single_image media=\u00bb7813&#8243; media_width_use_pixel=\u00bbyes\u00bb alignment=\u00bbcenter\u00bb media_width_pixel=\u00bb128&#8243;][\/vc_column][vc_column column_width_percent=\u00bb70&#8243; position_horizontal=\u00bbleft\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb2\/3&#8243;][vc_custom_heading subheading=\u00bbDescriu la geometria de l&#8217;edifici a Google SketchUp, defineix les zones t\u00e8rmiques i importa-ho tot a TRNSYS per executar les teves simulacions.\u00bb uncode_shortcode_id=\u00bb212344&#8243;]Google SketchUp[\/vc_custom_heading][\/vc_column][\/vc_row][vc_row unlock_row_content=\u00bbyes\u00bb row_height_percent=\u00bb0&#8243; override_padding=\u00bbyes\u00bb h_padding=\u00bb2&#8243; top_padding=\u00bb5&#8243; bottom_padding=\u00bb5&#8243; back_color=\u00bbcolor-rgdb\u00bb overlay_alpha=\u00bb100&#8243; gutter_size=\u00bb3&#8243; shift_y=\u00bb0&#8243; row_name=\u00bbGallery\u00bb][vc_column column_width_use_pixel=\u00bbyes\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; style=\u00bbdark\u00bb overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; medium_width=\u00bb0&#8243; zoom_width=\u00bb0&#8243; zoom_height=\u00bb0&#8243; column_width_pixel=\u00bb1400&#8243;][vc_custom_heading text_size=\u00bb\u00bb text_weight=\u00bb700&#8243; text_transform=\u00bbuppercase\u00bb separator=\u00bbyes\u00bb sub_lead=\u00bbyes\u00bb uncode_shortcode_id=\u00bb808372&#8243;]Videos de TRNSYS<\/p>\n<p>&nbsp;<\/p>\n<p>[\/vc_custom_heading][vc_gallery el_id=\u00bbgallery-47626&#8243; isotope_mode=\u00bbcellsByRow\u00bb medias=\u00bb5934,5937&#8243; gutter_size=\u00bb2&#8243; media_items=\u00bbmedia|custom_link|original,icon,caption\u00bb screen_lg=\u00bb1000&#8243; screen_md=\u00bb600&#8243; screen_sm=\u00bb480&#8243; single_overlay_opacity=\u00bb50&#8243; single_image_anim=\u00bbno\u00bb single_h_align=\u00bbcenter\u00bb single_padding=\u00bb2&#8243; single_icon=\u00bbfa fa-play\u00bb single_shadow=\u00bbyes\u00bb single_border=\u00bbyes\u00bb lbox_caption=\u00bbyes\u00bb carousel_rtl=\u00bb\u00bb single_title_uppercase=\u00bb\u00bb items=\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\u00bb uncode_shortcode_id=\u00bb184831&#8243;][\/vc_column][\/vc_row][vc_row][vc_column column_width_use_pixel=\u00bbyes\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/1&#8243; column_width_pixel=\u00bb800&#8243;][vc_custom_heading separator=\u00bbyes\u00bb separator_color=\u00bbyes\u00bb sub_lead=\u00bbyes\u00bb subheading=\u00bbTRNSYS \u00e9s utilitzat principalment per enginyers, arquitectes i consultors energ\u00e8tics per dissenyar i optimitzar sistemes energ\u00e8tics (centrant-se en energies renovables i sistemes eficients emergents) i per dissenyar edificis de baix consum energ\u00e8tic.\u00bb uncode_shortcode_id=\u00bb103831&#8243;]BREU DESCRIPCI\u00d3[\/vc_custom_heading][\/vc_column][\/vc_row][vc_row][vc_column column_width_use_pixel=\u00bbyes\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/1&#8243; column_width_pixel=\u00bb800&#8243;][vc_column_text uncode_shortcode_id=\u00bb161250&#8243;]TRNSYS es compon de dues parts. El primer \u00e9s un motor (anomenat nucli) que llegeix i processa el fitxer d&#8217;entrada, resol de manera iterativa el sistema, determina la converg\u00e8ncia i representa les variables del sistema. El nucli tamb\u00e9 proporciona utilitats que, entre altres coses, determinen propietats termof\u00edsiques, inverteixen matrius, realitzen regressions lineals i interpolen fitxers de dades externs.<\/p>\n<p>La segona part de TRNSYS \u00e9s una extensa biblioteca de components, cadascun dels quals modela el rendiment d&#8217;una part del sistema. La biblioteca est\u00e0ndard inclou aproximadament 150 models que van des de bombes fins a edificis multizona, turbines e\u00f2liques fins a electr\u00f2litzadors, processadors de dades meteorol\u00f2giques fins a rutines econ\u00f2miques i equips b\u00e0sics de climatitzaci\u00f3 i tecnologies emergents d&#8217;avantguarda. Els models es construeixen de manera que els usuaris puguin modificar components existents o escriure els seus propis, ampliant les capacitats de l&#8217;entorn.<\/p>\n<p>Despr\u00e9s de 35 anys de disponibilitat comercial, TRNSYS continua sent un paquet de programari flexible basat en components que s&#8217;adapta a les necessitats en constant canvi dels investigadors i professionals de la comunitat de simulaci\u00f3 energ\u00e8tica.[\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column column_width_use_pixel=\u00bbyes\u00bb align_horizontal=\u00bbalign_center\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/1&#8243; column_width_pixel=\u00bb800&#8243;][vc_custom_heading separator=\u00bbyes\u00bb separator_color=\u00bbyes\u00bb subheading=\u00bbTRNSYS inclou llibreries est\u00e0ndard amb molts dels components que es troben habitualment en sistemes energ\u00e8tics d&#8217;edificis, aix\u00ed com rutines per gestionar dades meteorol\u00f2giques, processament de radiaci\u00f3 solar, equips b\u00e0sics de climatitzaci\u00f3, piles de combustible d&#8217;hidrogen, tecnologies solars t\u00e8rmiques i el\u00e8ctriques, emmagatzematge t\u00e8rmic, acoblament a altres eines de simulaci\u00f3. i processament de resultats de simulaci\u00f3.\u00bb uncode_shortcode_id=\u00bb196186&#8243;]EXTENSES LLIBRERIES[\/vc_custom_heading][\/vc_column][\/vc_row][vc_row row_height_percent=\u00bb0&#8243; override_padding=\u00bbyes\u00bb h_padding=\u00bb2&#8243; top_padding=\u00bb0&#8243; bottom_padding=\u00bb0&#8243; overlay_alpha=\u00bb50&#8243; gutter_size=\u00bb3&#8243; shift_y=\u00bb0&#8243;][vc_column column_width_use_pixel=\u00bbyes\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/1&#8243; column_width_pixel=\u00bb800&#8243;][vc_column_text text_lead=\u00bbyes\u00bb uncode_shortcode_id=\u00bb199175&#8243;]<\/p>\n<blockquote>\n<p style=\"text-align: justify;\">Tot i que TRNSYS inclou les llibreries est\u00e0ndard per als sistemes energ\u00e8tics m\u00e9s comuns, inclou un m\u00e8tode per afegir nous m\u00f2duls, que permet als usuaris modificar f\u00e0cilment o crear nous components per a tecnologies que no estan cobertes.<\/p>\n<\/blockquote>\n<p>[\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column column_width_use_pixel=\u00bbyes\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/1&#8243; column_width_pixel=\u00bb800&#8243;][vc_column_text uncode_shortcode_id=\u00bb948805&#8243;]A m\u00e9s de la biblioteca est\u00e0ndard inclosa a TRNSYS, els usuaris poden comprar biblioteques TESS que inclouen m\u00e9s de 250 components. Cadascuna de les biblioteques de components inclou un fitxer de model TRNSYS (*.tmf) per utilitzar-lo a la interf\u00edcie de Simulation Studio, codi font i un exemple de projecte TRNSYS (*.tpf) que mostra els usos t\u00edpics dels models de components que es troben en aquesta biblioteca.<\/p>\n<p>Les biblioteques TESS representen el millor dels tipus interns a TESS (Especialistes en sistemes d&#8217;energia t\u00e8rmica).[\/vc_column_text][\/vc_column][\/vc_row][vc_row][vc_column column_width_use_pixel=\u00bbyes\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/1&#8243; column_width_pixel=\u00bb600&#8243;][vc_icon position=\u00bbleft\u00bb icon=\u00bbfa fa-file-text\u00bb size=\u00bbfa-2x\u00bb link=\u00bburl:%2Fwp-content%2Fuploads%2F2017%2F05%2F03-ComponentLibraryOverview.pdf|title:Download%20Trnsys%2018%20Standard%20component%20Libraries%20Overview|target:%20_blank|\u00bb link_text=\u00bbDescarrega la visi\u00f3 general de les llibreries de components est\u00e0ndard\u00bb el_class=\u00bbsys-tabs\u00bb uncode_shortcode_id=\u00bb194640&#8243;][\/vc_icon][vc_icon position=\u00bbleft\u00bb icon=\u00bbfa fa-file-text\u00bb size=\u00bbfa-2x\u00bb link=\u00bburl:%2Fwp-content%2Fuploads%2F2022%2F02%2FGeneralDescriptions_TESSLibs.18.pdf|title:Download%20TESS%20Libraries%20General%20Description|target:_blank\u00bb link_text=\u00bbDescarrega la descripci\u00f3 general de les biblioteques TESS\u00bb el_class=\u00bbsys-tabs\u00bb uncode_shortcode_id=\u00bb598853&#8243;][\/vc_icon][\/vc_column][\/vc_row][vc_row row_height_percent=\u00bb0&#8243; overlay_alpha=\u00bb50&#8243; gutter_size=\u00bb3&#8243; shift_y=\u00bb0&#8243; row_name=\u00bbchange\u00bb][vc_column column_width_use_pixel=\u00bbyes\u00bb gutter_size=\u00bb3&#8243; overlay_alpha=\u00bb50&#8243; shift_x=\u00bb0&#8243; shift_y=\u00bb0&#8243; z_index=\u00bb0&#8243; medium_width=\u00bb0&#8243; width=\u00bb1\/1&#8243; column_width_pixel=\u00bb800&#8243;][vc_tabs][vc_tab gutter_size=\u00bb2&#8243; column_padding=\u00bb2&#8243; title=\u00bbRequeriments de sistema\u00bb tab_id=\u00bb1464624710-2-60&#8243;][vc_column_text css=\u00bb.vc_custom_1648656514409{margin-top: 2em !important;margin-bottom: 2em !important;}\u00bb uncode_shortcode_id=\u00bb141015&#8243;]<strong>SISTEMA OPERATIU<\/strong><\/p>\n<p>TRNSYS requereix Windows 95\/98, NT 4.0, 2000, ME, Windows XP, Vista, Windows 7, Windows 8 o Windows 10<\/p>\n<p><strong>COMPILADORS<\/strong><\/p>\n<p>Gr\u00e0cies a la tecnologia DLL incorporada, no es requereix cap compilador per afegir components a TRNSYS si els obteniu com a DLL precompilat.<br \/>\nSi voleu depurar TRNSYS o afegir components per als quals heu rebut el codi Fortran, necessitareu un compilador Fortran (vegeu la Guia del programador per als compiladors compatibles). Si voleu crear els vostres propis components, necessitareu un compilador capa\u00e7 de crear una DLL. Aix\u00f2 inclou qualsevol compilador recent compatible amb Windows per a C++, Delphi, Fortran o altres idiomes.<\/p>\n<p><strong>Hardware<\/strong><\/p>\n<p><strong>CONFIGURACI\u00d3 M\u00cdNIMA<\/strong><\/p>\n<p>Processador Pentium III o equivalent<br \/>\n128 MB de RAM<br \/>\n200 MB d&#8217;espai disponible en disc (fins a 2 GB si instal\u00b7leu tots els fitxers de dades meteorol\u00f2giques opcionals)<\/p>\n<p><strong>CONFIGURACI\u00d3 RECOMANADA<\/strong><\/p>\n<p>Processador Pentium IV de 2,0 GHz o equivalent<br \/>\n512 MB de RAM<br \/>\n1 GB d&#8217;espai de disc disponible (fins a 3 GB si instal\u00b7leu tots els fitxers de dades meteorol\u00f2giques opcionals)[\/vc_column_text][\/vc_tab][vc_tab gutter_size=\u00bb2&#8243; column_padding=\u00bb2&#8243; title=\u00bbRegistre de canvis\u00bb tab_id=\u00bb1464624710-1-71&#8243;][vc_empty_space empty_h=\u00bb2&#8243;][vc_column_text css=\u00bb.vc_custom_1677231045198{margin-top: 2em !important;margin-bottom: 2em !important;}\u00bb uncode_shortcode_id=\u00bb128682&#8243;]TRNSYS 18 Release Notes<\/p>\n<p>Version 18.04.0001 (2022-22-02)<\/p>\n<p>Package<br \/>\nBugfix: the units of specific heat were incorrect in the Type167 (gas compressor) proforma.<br \/>\nBugfix: the units.lab file formatting was fixed. Its columnation was wrong and was causing an incorrect conversion between C and K and between F and R.<br \/>\nEnhancement: Type103 outputs power in both W and kJ\/h. The description of each output in the proformas now makes the units clear. Previously there was no way to tell the two outputs apart.<br \/>\nEnhancement: Some clarifications were added to the Type168 (natural ventilation) section of the 04-MathematicalReference manual.<\/p>\n<p>TRNSYS Components and Kernel<\/p>\n<p>Bugfix: Type1 (quadratic efficiency solar collector) could output efficiency &gt; 100% in collector efficiency mode 2.<br \/>\nBugfix: The Type1 default data file for optical mode 5 was in wrong format; proforma for optical mode 5 did not accept correct inputs for that mode.<br \/>\nEnhancement: new access functions getnUnits(), getIoutptVal(), getNumberOfOutputsFromUnit(), and getGlobalOutputValue(). These are necessary for TESS Type1316.<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.03.0002 (2021-19-01)<\/p>\n<p>Package<\/p>\n<p>Enhancement: Revisions to the 02-SimulationStudio manual. Removal of Mathis.<br \/>\nEnhancement: Revisions to the Type153 and 154 sections of the 04-MathematicalReference manual. Documentation corresponds to code modifications made in v18.03.0001.<br \/>\nEnhancement: Revisions to the 07-ProgrammersGuide manual. Block of Type numbers newly reserved for French community TRNSYS components.<br \/>\nEnhancement: Revisions to A4_trnViewBUI.pdf<br \/>\nEnhancement: Revisions to the trnViewBUI installer.<\/p>\n<p>TRNSYS Components<\/p>\n<p>Bugfix: Type69.f90 &#8211; deleted unused variables in source code.<br \/>\nBugfix: TrnsysFunctions.f90 &#8211; deleted blank lines in the ShowMessage() function.<\/p>\n<p>Multizone Building Model<\/p>\n<p>Bugfix: 301 (complex fenestration model) \u2013 wrong area was used (module area of window type instead of surface area).<br \/>\nType 56 version 136<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.03.0001 (2020-21-12)<\/p>\n<p>TRNSYS Components<\/p>\n<p>Bugfix: Type38 &#8211; the auxiliary heat would never turn on.<br \/>\nBugfix: Type 110. corrected equation for calculating heat transfer to the ambient; added output (6) for mass balance error flag; corrected error message text on FoundBadInput errors.<br \/>\nBugfix: Type153 underwent a major rewrite starting over from generic tank model, implementing auxiliary controls with one decision per timestep (ON or OFF). In prior versions of this model, auxiliary could change midway through a timestep. Mid-timestep inversion mixing was removed as well.<br \/>\nBugfix: Type154 underwent a major rewrite starting over from generic tank model, implementing auxiliary controls with one decision per timestep (ON or OFF). In prior versions of this model, auxiliary could change midway through a timestep. Mid-timestep inversion mixing was removed as well.<br \/>\nEnhancement: Type 114. revised mass balance check to be function of convergence criteria; added output (6) for mass balance error flag.<br \/>\nEnhancement: Type 146. revised mass balance check to be function of convergence criteria; added output (9) for mass balance error flag; changed SSR power integral units from kJ &amp; kJ\/hr to kWh and kW.<br \/>\nEnhancement: Type 147. revised mass balance check to be function of convergence criteria; added output (9) for mass balance error flag; changed SSR power integral units from kJ &amp; kJ\/hr to kWh and kW.<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.03.0000 (2020-09-12)<\/p>\n<p>Package<\/p>\n<p>Bugfix: corrected an error in the Type126 proforma that prevented the user from changing the value of certain parameters.<br \/>\nBugfix: corrected an error in the number of data items included in the Type190.dat example inverter data file.<br \/>\nBugfix: the pv_ref_params.exe tool for generating parameters for the 5-parameter PV model (Type190) had expired and has been renewed.<br \/>\nEnhancement: Type190 outputs power in both W and kJ\/h. The description of each output in the proformas now makes the units clear. Previously there was no way to tell the two outputs apart.<br \/>\nEnhancement: Simulation Studio documentation updated.<\/p>\n<p>TRNSYS Components<\/p>\n<p>Bugfix: replaced the Type169debug.dll with the release version. The debug version of the dll was causing a Visual Studio environment crash when debugging a *.dck.<br \/>\nBugfix: corrected a bug in Type47 that allowed the battery SOC to continue decreasing after discharge has stopped or to continue increasing after charging had stopeed.<br \/>\nBugfix: corrected a bug that prevented the CoolProp routine from working for all fluids.<br \/>\nBugfix: the v18.2 change to always rereading parameters whether or not the unit number has changed caused a problem since we were using the \u00ab\u00bbit&#8217;s time to reread parameters\u00bb\u00bb section to generate an error that only one instance of Type49 is allowed per simulation. Fixed it by storing the original unit number and comparing that to the current unit number on reread parameters. If they&#8217;re different then we error out.<br \/>\nBugfix: the file Type169debug.dll caused a Visual Studio crash when debugging a simulation from the compiler. The file was replaced with the release version.<br \/>\nBugfix: the getTimeStepNumber() access function no longer returns a random integer close to the present time step number but actually returns the present time step number.<br \/>\nEnhancement: the getParameterOfUnit() access function has been added. It returns the ith parameter of unit j.<br \/>\nEnhancement: the getNumberOfUnitsInDeck() access function has been added. It returns the number of UNITS in the present dck.<br \/>\nEnhancement: the getTypeNumberOfUnit() access function has been added. It return the TYPE number associated with a specified UNIT number.<br \/>\nEnhancement: added access functions to the kernel to tell a Type how many instances of that TYPE number are used in the simulation, and which instance (of the same Type) a particular UNIT is. So by calling these access functions a unit can know \u201cthere are 3 instances of this type in the simulation and the current unit is the 2nd instance in the deck\u201d. This helps manage storage for Types that must store a large amount of data and cannot use the storage array (or prefer not to).<br \/>\nEnhancement: added a \u201cShowMessage\u201d for Messages \u2013 it finds unit and type no by itself, and the error code is optional. The intent was to provide a more intuitive (and shorter) way to print messages.<br \/>\nBugfix: The functions GEWARN, NEWARN, and EQWARN generated an error even when the \u00abgenerate warning\u00bb option was selected.<br \/>\nBugfix: the GTWARN function could sometimes generate a -99999 value.<br \/>\nBugfix: Type119 &#8211; the total air flow rate parameter was incorrectly forced to be greater than 0.<br \/>\nBugfix: Type126 (simple cooling tower) generated a floating point error if the natural convection airflow or capacity parameters were set to zero.<\/p>\n<p>TRNBuild &#8211; User interface of the multizone building model<\/p>\n<p>Enhancement: Improved integration of Add-On \u00abtrnViewBUI\u00bb (viewer for exploring the building\/shader geometry and shading matrices)<br \/>\nEnhancement: output for Daylight statistic output file (NTYPE 436)<br \/>\nBugfix: removed outputs 133 and 134 (outputs are used for development only)<br \/>\nBugfix: generating radiance file for Daylight: shrinking of window geometry went wrong for very large values of x,y,z<br \/>\nMinor improvements\/Bugfixes<br \/>\nTRNBuild version 3.0.298<br \/>\nIntegrated tools: trnsIDF.exe v181, trnsIDFup.exe v112, trnvfm.exe v39, trnrad.exe v128, gentrn.dll v215 , trnshdbui.dll v1.0.185<\/p>\n<p>Multizone Building Model<\/p>\n<p>Enhancement: Code adaption to Fortran 2018<br \/>\nBugfix: Outputs 170, 171 &#8211; wrong summation if more than more than one ventilation with heating\/ventilation per airnode were defined.<br \/>\nBugfix: TRNFlow &#8211; floating point error caused Darcy-Weisbach pipe\/duct model.<br \/>\nBugfix: minor changes (e.g. error messages)<br \/>\nType 56 version 135<\/p>\n<p>Add-ons<\/p>\n<p>trnViewBUI (v1.007): additional daylight geometry is now integrated, new icon, minor bugfixes.<\/p>\n<p>&nbsp;<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.02.0002 (2020-02-20)<\/p>\n<p>TRNSYS Components and Kernel<\/p>\n<p>Bugfix: the auxiliary energy in Type45 was not controlled correctly.<br \/>\nBugfix: correction to the numerical precision of values placed in the parout() array for communication between dll and exe.<\/p>\n<p>Multizone Building Model<\/p>\n<p>Bugfix: \u201cmin. airnode volume check\u201d may caused \u201cfatal error\u201d due to wrong counter for projects with multiple airnode zones.<br \/>\nType 56 version 134<\/p>\n<p>&#8212;<br \/>\nVersion 18.02.0001 (2020-01-30)<\/p>\n<p>Package<\/p>\n<p>Bugfix: The TRNDll recompiled with correct code<\/p>\n<p>&#8212;<br \/>\nVersion 18.02.0000 (2020-01-10)<\/p>\n<p>Package<\/p>\n<p>Bugfix: Type110.tmf: the units of the power coefficients (parameters) are incorrectly set to kJ\/h and should be dimensionless.<br \/>\nBugfix: the pv_ref_params.exe tool for generating parameters for the 5-parameter PV model (Type190) had expired and has been renewed.<br \/>\nBugfix: MATHIS is no longer being distributed or supported by its developer. Its proforma, documentation, and example have been removed.<br \/>\nBugfix: The Type168 entry in the 05-Mathematical Reference contained an error in equation 4.6.9.2.<br \/>\nBugfix: The Type168 proforma \u00abmore\u00bb button information for the mode parameter contained an error in the eqatation for ACR.<br \/>\nEnhancement: The Type168 documentation has been improved.<br \/>\nEnhancement: The Perez 1999 tilted surface radiation model that is mentioned in the documentation set (for Types15 and 99 in the MathematicalReference and for the getIncidentRadiation() subroutine in the Programmer&#8217;s Guide) now includes a reference to the paper from which it originates.<br \/>\nEnhancement: added a clearer hint in the Type155 (Calling MATLAB) documentation about the Type155.dll needing to match the MATLAB version being used.<br \/>\nEnhancement: Type56 documentation updated related to daylight and detailed humidity model(05-MultizoneBuilding.pdf)<br \/>\nEnhancement: trnViewBUI documentation (A4_trnViewBUI.pdf)<\/p>\n<p>TRNSYS Components<\/p>\n<p>Bugfix: corrected a bug in Proc.f90. When writing const and var to the *.lst file, we are only writing the first 10 characters of the array, not all the way out to the end of maxEquationLength. This can cause stray letters and partial variable names to be written to the lst file.<br \/>\nBugfix: added code to avoid a division by zero in the RelativeHumidity() function in the psychrometrics routine.<br \/>\nBugfix: fixed a bug in which in some rare circumstances Types could claim that they accessed an input value higher than the range they had reserved. NOTE: this change means that all Types reread the values of their parameters once per timestep. Parameters are reread from the values stored in the kernel. They are not reevaluated.<br \/>\nBugfix: Type158 now does its adiabatic mixing after energy balances are computed but before outputs are set.<br \/>\nBugfix: fixed a case in Type162 in which high air flow rates and low water flow rates caused a floating point error.<br \/>\nBugfix: corrected a bug in Type103 that caused the cell temperature to be overestimated and therefore the power to be underestimated.<br \/>\nBugfix: corrected a bug in Type190 that caused the cell temperature to be underestimated and therefore the power to be overestimated.<br \/>\nBugfix: fixed a bug that caused the NaN check (part of \u00abdebugging mode\u00bb) not to work.<br \/>\nBugfix: corrected an error where Type99 would occasionally increment the data field prior to correct timestep.<br \/>\nEnhancement: added an error check for rated condition values that result in sensible-only heat transfer and that prevent the model from being able to compute UA.<\/p>\n<p>TRNBuild &#8211; User interface of the multizone building model<\/p>\n<p>Enhancement: Integrated call of Add-On \u00abtrnViewBUI\u00bb for exploring the building\/shader geometry and shading matrices.<br \/>\nEnhancement: Glazing library with update glazing systems of GlassTr\u00f6sch.<br \/>\nEnhancement: Detailed window model: new Keywords for Window 7.7.<br \/>\nMinor improvements (e.g. error messages).<br \/>\nTRNBuild version 3.0.294<br \/>\nIntegrated tools: trnsIDF.exe v181, trnsIDFup.exe v112, trnvfm.exe v39, trnrad.exe v127, gentrn.dll v213 , trnshdbui.dll v1.0.184.<\/p>\n<p>Multizone Building Model<\/p>\n<p>Bugfix: If the weather data component connected to Type 56 was \u00abUnit 1\u00bb the automatic incident solar radiation calculation on tilted external surfaces went wrong.<br \/>\nBugfix: Output 932 considered all external shading devies, not only geomteric shading devices.<br \/>\nBugfix: minor changes (e.g. error messages)<br \/>\nType 56 version 133<\/p>\n<p>Add-ons<\/p>\n<p>New: trnViewBUI &#8211; free AddOn for exploring the building\/shader geometry and shading matrices.<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.01.0001 (2018-11-26)<\/p>\n<p>TRNBuild &#8211; User interface of the multizone building model<\/p>\n<p>Bugfix: In the import-process of SketchUp 3D-Models, window surfaces weren&#8217;t imported correctly when their base surface names include an \u00abe\u00bb or \u00abE\u00bb.<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.01.0000 (2018-11-16)<\/p>\n<p>Package<\/p>\n<p>Bugfix: Equation 4.9.7 14 has been corrected in the Type74 mathematical reference.<br \/>\nBugfix: The Type74 proforma was corrected. The \u00abmore\u00bb button information about the axis orientation mode was incorrect.<br \/>\nBugfix: modified some misleading text in the restaurant example.<br \/>\nBugfix: modified the water draw profile in the SDHW example so that it is more realistic.<br \/>\nEnhancement: The Type74 documenation was edited to be more clear in its definitions of receiver, absorber, aperture, and reflector areas.<br \/>\nEnhancement: The Type74 documentation description about the possible orientations of the CPC has been improved.<br \/>\nEnhancement: The Type168 documentation has been clarified and improved.<br \/>\nEnhancement: the multizone building wizard now creates a project with line styles.<br \/>\nEnhancement: Revised the section in 09-Tutorials.pdf related to 3D building example and added step 6 (daylight dependent control).<\/p>\n<p>TRNSYS Components<\/p>\n<p>Bugfix: corrected a bug in Type15 (EPW mode) that caused a read error with certain files that don&#8217;t conform strictly to the EPW file header requirements.<br \/>\nBugfix: corrected a bug in Type15 (TRY 2010 mode) that caused a read error with certain files that have a different number of header lines.<br \/>\nBugfix: corrected a bug in Type103 that caused the cell temperature to be underestimated and therefore the power to be overestimated.<br \/>\nBugfix: corrected a bug in Type190 that caused the cell temperature to be underestimated and therefore the power to be overestimated.<br \/>\nBugfix: corrected a bug in Type156 that allowed the tank to cool below ambient if there was only a single node.<br \/>\nBugfix: corrected a bug in Type158 that allowed the tank to cool below ambient if there was only a single node.<br \/>\nBugfix: corrected a bug in Type9 that could cause a time inconsistency error after multiple simulation years (very small rounding errors that compound).<br \/>\nBugfix: corrected the error message when Type155 fails to load in the 64-bit version.<\/p>\n<p>Simulation Studio<\/p>\n<p>Enhancement: Improvement in the floating license system to use emergency backup servers if the primary server is down.<\/p>\n<p>TRNBuild &#8211; User interface of the multizone building model<\/p>\n<p>Bugfix: Max. heat load calculation didn&#8217;t handle zones with multiple airnodes correctly.<br \/>\nEnhancement: import Trnsys3d file &#8211; added geosurf similar to import in Studio (Default value is 0.8 for both, previously TRNbuild used 0.6).<br \/>\nMinor improvements.<br \/>\nTRNBuild version 3.0.294; Type56 v132.<br \/>\nIntegrated tools: trnsIDF.exe v180, trnsIDFup.exe v112, trnvfm.exe v39, trnrad.exe v126, gentrn.dll v211, trnshdbui.dll v1.0.184.<\/p>\n<p>Multizone Building Model<\/p>\n<p>Bugfix: output wet bulb temperature of airnode (NTYPe 180) wasn\u2019t calculated correctly.<br \/>\nBugfix: For some comfort outputs (Ntypes 121,122,123,124,125,126,127,132) the humidity calculation wasn\u2019t switched on automatically if these were the only outputs requiring humidity calculation.<br \/>\nBugfix: Shading of circumsolar radiation by external shading geometry was consider only if direct solar radiation strikes the surface. (in general, neglectable impact on results).<br \/>\nType56 version 132.<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.00.0019 (2018-06-05)<\/p>\n<p>Package<\/p>\n<p>Bugfix: The Type103 documentation (and proformas) refer to parameter 4 as ambient temperature at reference conditions and should have refered to it as module temperature at reference conditions.<br \/>\nBugfix: The Type190 documentation (and proformas) refer to parameter 4 as ambient temperature at reference conditions and should have refered to it as module temperature at reference conditions. Note that the Type190 code was correct.<br \/>\nBugfix: Made some corrections to the Type9 detailed description. The \u00ab2-hour data &#8211; averages\u00bb section contained some incorrect values.<br \/>\nBugfix: corrected the location of the C++ Type template. If it is missing, exporting a proforma as C++ code caused an empty and ever growing file to be created.<\/p>\n<p>TRNSYS Components<\/p>\n<p>Bugfix: Corrected a bug in Type103 that asked the user for ambient temperature at reference conditions and should have asked instead for module temperature at reference conditions.<br \/>\nBugfix: corrected a bug in Type29 (economics) that caused there to be no output file written.<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.00.0018 (2018-05-18)<\/p>\n<p>Package<\/p>\n<p>Bugfix: The definition of \u00abcapacity\u00bb in the MathematicalReference Type107 nomenclature section has been corrected.<br \/>\nBugfix: Update to the SlabOnGrade example and the Type49 documentaiton as a result of a bugfix in the code.<br \/>\nBugfix: The GroundTemperatureViewer application was referenced in the SlabOnGrade example but was not included in the package. It is now included.<br \/>\nBugfix: Minor improvements to the 05-MultizoneBuilding.pdf documentation.<\/p>\n<p>TRNSYS Components<\/p>\n<p>Bugfix: Type190 set the output power to zero if the PV array power and voltage were both above the inverter&#8217;s voltage and power limits. Type190 now limits the voltage until both voltage and power are under the limit.<br \/>\nBugfix: A problem with the zone to soil heat transfer algorithm has been fixed. NOTE: this change requires the addition of one new parameter for each defined slab.<br \/>\nBugfix: modified a FORMAT statement in Type40 to allow correct writing to the list file for simulations that run longer than 10 years.<br \/>\nBugfix: set the Type148 outlet pressure to the inlet 1 value when there is no flow in mode 1.<br \/>\nBugfix: Revision to the Type168 Rushweyh model equation for natural convection. (RuscheweyhFactor * dT**0.5 instead of (RuscheweyhFactor * dT)**0.5 )<br \/>\nEnhancement: Type49&#8217;s calculation speed has been improved.<\/p>\n<p>Trnsys3d &#8211; 3d graphical building interface SketchUp plugin<\/p>\n<p>Bugfix: Trnsys3d &#8211; TRNSYS Studio, tutorial, and faq buttons.<br \/>\nBugfix: Trnsys3d &#8211; display in object info window (for SketchUp 2017 &amp; 2018 only).<\/p>\n<p>TRNBuild &#8211; User interface of the multizone building model<\/p>\n<p>Bugfix: error rounding layer thickness (has to be rounded up to 3 digits).<br \/>\nBugfix: for Generate Radiance files: mismatch eshade and ishade list if a constant value was defined.<br \/>\nBugfix: for TRNFlow: adapted error checking such that airnodes of different zones can be linked by regime coupling.<br \/>\nBugfix: for TRNFlow: wrong format for writing values of crack CSCL of Large Opening Type2 (LVO = 2) to CIF file (field width was restricted to 6).<br \/>\nminor improvements.<br \/>\nTRNBuild v3.0.292; Type56 v131.<br \/>\nIntegrated tools: trnsIDF.exe v179, trnsIDFup.exe v112, trnvfm.exe v38, trnrad.exe v126, gentrn.dll v211, trnshdbui.dll v1.0.184.<\/p>\n<p>Multizone Building Model<\/p>\n<p>Enhancement: added error detection and automatic correction for incorrect link from Type99 to Input GRDREF (ground reflectance) of Type 56.<br \/>\nEnhancement: added error detection for incorrect link from Type109 to Input GRDREF (ground reflectance) of Type 56.<br \/>\nminor improvements.<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.00.0017 (2018-01-19)<\/p>\n<p>Package<\/p>\n<p>Bugfix: The SunSpace.tpf (which is referenced in the Tutorials manual) is added back to the distribution.<br \/>\nBugfix: The ProgrammersGuide.pdf manual is updated to reflect the change from a single subroutine (getIndcidentRadiation() ) to getHorizontalRadiation() and getTiltedRadiation().<\/p>\n<p>TRNSYS Components<\/p>\n<p>Bugfix: Type15 &#8211; the tilted radiation mode for horizontal radiation was fixed as mode 3. Since the horizontal radiation comes from the weather file there should not be any tilted correction to the horizontal.<br \/>\nBugfix: Type90 generated an array out of bounds error if the present windspeed is higher than any of the wind speeds listed in the power curve data file.<\/p>\n<p>TRNBuild &#8211; User interface of the multizone building model<\/p>\n<p>Bugfix: max. heat load calculation: window types with slope = surface orientation are reset to slope = 90 because surface orientation isn\u2019t defined in standard format)<br \/>\nBugfix: Generate Radiance Files: 1. zone numbers of daylight filenames now always match zone order of *.b18 file. 2. only adjacent surfaces with FRONT definition are taking into account for non focused zones. 3. windows of an airnode must have a shader activated in order to account for shaded states defined by window type manager.<br \/>\nminor improvements<br \/>\nTRNBuild v3.0.288; Type56 v130.<br \/>\nIntegrated tools: trnsIDF.exe v179, trnsIDFup.exe v112, trnvfm.exe v37, trnrad.exe v125, gentrn.dll v210, trnshdbui.dll v1.0.184<\/p>\n<p>Simulation Studio<\/p>\n<p>Bugfix: 3D building wizard &#8211; equation of IA is corrected (no impact on the building due to setting \u201cinternal calculation\u201d for orientations)<br \/>\nBugfix: Allow for projects to import links to equations more coherently<br \/>\nBugfix: Automatic naming of equations no longer uses the minus ( &#8211; ) sign in the equation name.<\/p>\n<p>Multizone Building Model<\/p>\n<p>Bugfix: calculation AHU &#8211; add bypass function, when ambient temperature between supply air temperature and return air.<br \/>\nBugfix: daylight conceptual shading &#8211; no shading activated for all external windows of a zone =&gt; shading control for daylight is \u201cunshaded\u201d.<br \/>\nBugfix: TRNFlow \u2013 for pollutant calculation the filter data of flow controller F2 was not read correctly.<br \/>\nEnhancement: CFS glazing &#8211; daylight conceptual shading control : control is set.<br \/>\nEnhancement: CFS glazing : variables Dtop, Dbot, Dright, Dleft for shaders defined within w7.x can be used.<br \/>\nminor improvements.<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.00.0016 (2017-12-04)<\/p>\n<p>TypeStudio<\/p>\n<p>Enhancement: TypeStudio compiled \/ linked Types can now pass strings back and forth to the TRNDll.<\/p>\n<p>TRNSYS Components<\/p>\n<p>Bugfix: corrected a bug in Type48 (regulator \/ inverter) that caused an error if the battery voltage went to zero. The error is now trapped and the simulation is terminated.<br \/>\nBugfix: Type15 &#8211; tilted radiation corrected in Germay TRY 2017 mode.<\/p>\n<p>TRNSYS Kernel<\/p>\n<p>Bugfix: corrected the Type list for the CONTAM\/AHU example when run in the demo version.<br \/>\nEnhancement: The CallProgram() routine was changed so that the called program now runs in the background.<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.00.0015 (2017-10-31)<\/p>\n<p>Package<\/p>\n<p>Bugfix: parameter \/ input \/ output descriptions have been added to the Type96 documentation.<br \/>\nBugfix: \u00abmore\u00bb button contents have been added to the Type96 proforma.<br \/>\nBugfix: the usr_gain.lib file was missing from both the Japanese and Spanish \\Building\\Lib folders<br \/>\nBugfix: Type62 proforma cycles had come unglued from their respective parameters. Caused a \u00abfailed to load document\u00bb error when trying to open some projects that use Type62.<br \/>\nBugfix: 3D building wizard bug fix &#8211; shading device parameters are now written correctly to the deck<br \/>\nBugfix: Window types in Trnsys3d template files updated to use inputs SHADE_CLOSE and SHADE_UP for internal controle and TRNSYS.h header file are updated for the v17 calling standard.<br \/>\nEnhancement: Examples have been cleaned up and revised.<\/p>\n<p>TRNBuild &#8211; User interface of the multizone building model<\/p>\n<p>Import Trnsys3d file: surface order mismatch for several windows caused error message.<br \/>\nImport Trnsys3d file: bugfix import of non existing zones in updated idf model.<br \/>\nGenerate Radiance file: wrong shader material for several windows with different window types on one wall.<br \/>\nminor improvements.<br \/>\nTRNBuild v3.0.285; Type56 v129.<br \/>\nIntegrated tools: trnsIDF.exe v078, trnsIDFup.exe v112, trnvfm.exe v37, trnrad.exe v122, gentrn.dll v210, trnshdbui.dll v1.0.184.<\/p>\n<p>Simulation Studio<\/p>\n<p>Bugfix: tabs in a proforma that have a variable number of items on them now appear. Previously they could disappear.<br \/>\nBugfix: all tabs (parameter, input, output, etc.) are shown for components that have a plugin. Previously if a component had no parameters but did have a plugin the user had no way of launching the plugin.<br \/>\nBugfix: Edit\/replace will update mode if the new component has a different mode from the old one.<\/p>\n<p>TRNSYS Components<\/p>\n<p>Enhancement: A mode has been added to Type15 to read the German TRY 2017 format.<br \/>\nBugfix: In Type 15, for German TRY files, the algorithms have been corrected to apply the temperature and humidity data from the file on the half-hour rather than on the hour.<\/p>\n<p>Multizone Building Model<\/p>\n<p>Bugfix: window type &#8211; window ID defined as input\/schedule might cause error message related to optical standard.<br \/>\nBugfix: Outputs (for CFS model only ): 317\u2013321 bugfix related naturally ventilated gaps. 940,943,946 bugfix for internal shading with mechanically ventilated last gap going outside.<br \/>\nminor improvements<\/p>\n<p>TypeStudio<\/p>\n<p>Bugfix: TypeStudio now colorizes the ElseIf keyword.<br \/>\nEnhancement: Users can now drag-and-drop a workspace (.tsw) file onto the Type Studio window to load it.<br \/>\nEnhancement: Users can drag-and-drop any number of Fortran files (.f90, .f95, .f03) onto the window to add them to the workspace.<br \/>\nEnhancement: When switching back to Type Studio, any files loaded in the workspace will be reread from disk if their contents have changed. This facilitates the \u00abedit in a real editor, compile in Type Studio\u00bb workflow because you can just alt-tab back and forth between the two and Type Studio will always compile the latest saved version of the file.<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.00.0014 (2017-06-23)<\/p>\n<p>TRNBuild &#8211; User interface of the multizone building model<\/p>\n<p>Incorrect default value for CCISHADE<br \/>\nTRNBuild v3.0.283; Type56 v128<br \/>\nIntegrated tools: trnsIDF.exe v075, trnsIDFup.exe v112, trnvfm.exe v37, trnrad.exe v119, gentrn.dll v209, trnshdbui.dll v1.0.184<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.00.0013 (2017-06-13)<\/p>\n<p>Package<\/p>\n<p>The C++ Type template and TRNSYS.h header file are updated for the v17 calling standard.<\/p>\n<p>TRNSYS Executable and Online Plotter<\/p>\n<p>The online plotter was displaying different results when refreshing the plot window. (This did not effect actual simulation results.)<br \/>\nThe command line options \/n and \/h both suppress the TRNSYS error dialog window.<\/p>\n<p>TRNBuild &#8211; User interface of the multizone building model<\/p>\n<p>minor bugfixes<br \/>\nTRNBuild v3.0.282; Type56 v128<br \/>\nIntegrated tools: trnsIDF.exe v075, trnsIDFup.exe v112, trnvfm.exe v37, trnrad.exe v119, gentrn.dll v209, trnshdbui.dll v1.0.184<\/p>\n<p>Simulation Studio<\/p>\n<p>Bugfix to online license activation<\/p>\n<p>TRNSYS Components<\/p>\n<p>Using multiple Type15s in a single project with weather files from different time zones produced incorrect solar radiation values.<br \/>\nType97 (CONTAM) did not check to make sure that all zone volumes are non zero.<br \/>\nThe three letter unit codes were incorrect for Type162 inputs 6 and 7.<br \/>\nA new component for calling a Python script is included. Type169 calls the script directly and does not use a transfer data file as Type163 does.<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.00.0012 (2017-05-05)<\/p>\n<p>Package<\/p>\n<p>documentation for Type168 is now included.<br \/>\ndocumentation for Type96 is now included.<br \/>\ndocumentation hyperlinks are now active.<\/p>\n<p>&#8212;<\/p>\n<p>Version 18.00.0010 (2017-04-06)<\/p>\n<p>New features at a glance<\/p>\n<p>Package<\/p>\n<p>Documentation emphasis on learning to better use TRNSYS<br \/>\nHints and Tips documentation<br \/>\nParameter \/ Input \/ Output reference documentation<br \/>\nIntegrated TRNSYS-Dedicated Fortran Type Compiler (TypeStudio)<br \/>\nDocumented HVAC system examples<br \/>\nDetailed building \/ HVAC modeling introduction tutorial<br \/>\nAdditional documented examples<\/p>\n<p>TRNSYS-add-ons<\/p>\n<p>Integrated Fortran Compiler with a dedicated interface for use with TRNSYS (TypeStudio)<\/p>\n<p>TRNBuild &#8211; User interface of the multizone building model<\/p>\n<p>TRNBuild Navigator extended to regime data (heating, cooling, ventilation, gains) and contructions data (layers, surfaces, windows) and schedules<br \/>\nUse of longer names of airnodes and zones, construction types, etc. possible<br \/>\nUse of small letters for names of airnodes and zones, construction types, etc. possible<br \/>\nAdded opaque surface types (wall, floor, ceiling,roof)<br \/>\nRename wall types to construction types<br \/>\nUpdated glazing library<br \/>\nNew schedule library<br \/>\nAdded annual schedules<br \/>\nAdded new gain library<br \/>\nNew gain categories: lights, people, equipment, misc, thermal bridge<br \/>\nReference area as a new parameter for each airnode<br \/>\nArea related definition of regime data types (heating, cooling, ventilation, gains) possible<br \/>\nExtended regime coupling of airnodes from 2 to 6<br \/>\nAdded total renewable primary energy and total non-renewable primary energy for opaque layers and windows<br \/>\nSeveral new outputs (NTypes)<br \/>\nDescription &amp; unit for user-defined inputs.<br \/>\nTRNBuild v3.0.281; Type56 v128<br \/>\nIntegrated tools: trnsIDF.exe v074, trnsIDFup.exe v112, trnvfm.exe v37, trnrad.exe v119, gentrn.dll v209, trnshdbui.dll v1.0.184<\/p>\n<p>Multizone building model<\/p>\n<p>Daylight depending control type<br \/>\nDynamic daylight simulation for sensor points based on DaySIM<br \/>\nComfort calculation extended to elevated air speed acc. ASHRAE Standard 55-2013, Appendix G<br \/>\nComplex fenestration model (Add-on)<br \/>\nEnergy demand for supply air conditioning<\/p>\n<p>Simulation Studio<\/p>\n<p>Parametric runs<br \/>\nUpdated 3D building project type including daylighting<br \/>\nBetter interoperability: TMF files in XML, syle information in the deck file<br \/>\nGenerated FORTRAN code updated for FORTRAN 90<br \/>\nSimplified dialogs: unused tabs are hidden, keyboard shortcuts<br \/>\nImproved connection window: sort variables by name, click on inbound variables first, delete key removes the selected connection, new keyboard shortcuts and map<br \/>\nImproved error report: opens automatically if there are errors, new design with tabs, improved filters (notice\/warning\/errors)<br \/>\nSimulation summary report activation<br \/>\nNumerous simplifications and bug fixes<\/p>\n<p>TRNSYS Engine<\/p>\n<p>Improved solar radiation interpolation<br \/>\nUpdated psychrometric properties<br \/>\nAutomatic report generation<\/p>\n<p>New Components<\/p>\n<p>8 new controller components<br \/>\n20 new HVAC air-side components<br \/>\n3 new links to other programs (Mathis, Python, CoolProp)<br \/>\n11 new hydronics components<br \/>\n2 new utility components<br \/>\n2 new electrical components[\/vc_column_text][\/vc_tab][\/vc_tabs][\/vc_column][\/vc_row]<\/p>\n<\/div>","protected":false},"excerpt":{"rendered":"<p>Potent software per al c\u00e0lcul i optimitzaci\u00f3 de sistemes energ\u00e8tics. 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