3D modeliranje Passivhuas zgrada - designPH

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Information about 3D modeliranje Passivhuas zgrada - designPH
Engineering

Published on October 24, 2014

Author: pekoto

Source: slideshare.net

Description

designPH je plugin za Trimble Sketchup koji Vam olakšava projektiranje Passivhaus zgrada u 3D-u.Željno očekivani plugin za olakšani unos vrijednosnih parametara u PHPP napokon je dostupan! Modeliranje Passivhaus zgrada nikad nije bilo lakše...

1. Alat za 3D modeliranje Passivhaus zgrada Passivhaus Institut – odsjek Innsbruck

2. designPH je plugin za Trimble Sketchup koji vam olakšava projektiranje Passivhaus zgrada u 3D-u i unos modela u PHPP

3. To je novo sučelje za PHPP

4. + =

5. Bilo da se radi o jednostavnom projektu...

6. Ili o kompleksnom pročelju...

7. obavlja zadatak...

8. Klima: Njemačka Qh 15 kWh/m²yr NKP 165 m² (korisnički definirano) FHLF 2,90 Pomaže pri implementaciji dobrih Passivhaus projekata

9. Što čini designPH toliko jedinstvenim?

10. Odaberite vaš Zbunjeni? Stvarno je jednostavno! vlastiti način rada!

11. Pustite da designPH napravi veći dio posla...

12. Ili budite stručnjak i uđite u detalje...

13. Moguće je prilagodite gotovo sve detalje...

14. Automatska analiza modela designPH olakšava Vam stvari…

15. Climate data Average annual climate data is used, with 7 variables as example below Specific Annual Heat Demand [kWh / (m2a) ] QH,TFA = Q H / ATFA Annual Heat Demand (kWh / a) = + - ( QT QV Q S + Q I ) ² QH G Heat Losses ( QL = QT + QV ) Transmission Heat Losses (kWh / a) QT = QT,opaque + QT,windows + QT,bridges Transmission Heat Loss, Opaque areas (kWh / a) QT,opaque = # ( U x A ) x ft x Gt Transmission Heat Loss, Windows (kWh / a) QT,windows = # ( U g ! A g + U f ! A f + s p c . Ls p c + in st ! Lin s t ) x ft x G t Ventilation Heat Losses (kWh / a) QV = nV,eff ! VV ! cair ! Gt nV,eff = 0.142 h-1 Thermal bridges are not included yet Temperature reduction factors ft, for adjacent unheated spaces are not yet implemented. Default ft = 1 For ground, ft = 0.6 (Version 1.0, 01/2014) Utilisation Factor ² G = 1 - ( Q G / Q L )5 1 - ( Q G / Q L )6 metoda proračuna...

16. Ventilation Heat Losses (kWh / a) QV = nV,eff ! VV ! cair ! Gt nV,eff = 0.142 h-1 VV = ATFA x 2.5m (Free) Heat Gains ( QG = QS + QI ) Shading reduction factor is not calculated within designPH although shading objects are detected and their dimensions are exported to PHPP. Default value, rshade = 75% Transmission Heat Loss, Opaque areas (kWh / a) QT,opaque = # ( U x A ) x ft x Gt Transmission Heat Loss, Windows (kWh / a) QT,windows = # ( U g ! A g + U f ! A f + s p c . Ls p c + in st ! Lin s t ) x ft x G t Solar Gain (kWh / a) QS = # ( rtot x g x Aw x GS,perp ) Solar Reduction Factor rtot = rframe x rshade x rdirt x rnp 0.75 default 0.95 0.85 Internal Gains (kWh / a) QI = q i x the at x A TFA implemented. Default ft = 1 For ground, ft = 0.6 A g / Aw theat = HT * 24 / 1000 Koristi se go(ddoiš onvjao gm terteonduat kPaH)PP proračuna

17. pronađite nas na www.designph.org

18. Budite dio ostalih korisnika...

19. Pronađite novosti i događanja...

20. Iskoristite korisničku podršku na forumu...

21. Preuzmite korisnički priručnik i uputstva...

22. Budite u toku s posljednjim dodacima...

23. Zabavite se koristeći designPH i PHPP ! Vaš designPH razvojni tim

24. Pogledajmo designPH u akciji…

25. Zabavite se koristeći designPH i PHPP ! Nadamo se da ćete se jednako zabaviti koristeći designPH kao što smo se mi zabavili razvijajući ga za Vas.

26. Alat za 3D modeliranje Passivhaus zgrada © Sve ilustracije i slike vlasništvo su Passivhaus Instituta. Copyright 2014 Passivhaus Institut– odsjek Innsbruck

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