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建築環境工学 - maebashi-it.ac.jp

5 5 .. 1.. Q . UA hA . UA hA .. 2. 1/3 .. = [W]. K [W/m2 K] S [m2]. qi [ ] qo [ ]. = [W].. 3. 2/3 .. = [W]. K [W/m2 K] S [m2]. qi [ ] SAT [ ]. = [W].. SAT . SAT . 4. 3/3 .. 5. 1/3 .. = + .. = + . = [W]. V . [m3/s]. 1 . [ /s]. = /3,600. n . 1 [m3/h] [m3] . 1 . 6.. 30 m3 30 m3.. 10 m2 30 m2. 30 m3 90 m3. 30 30 [ /h] 30 90 [ /h].. 7. 2/3 .. = + . [W/K].. So [m2] . Q Q . 8. 9. 3/3 . Q Q .. 2 K]. = [W/m . 1 [ ] .. Q . 10. UA 1/2 .. = [W/K] = + .. = .. 2 K]. = [W/m . 11. UA 2/2 .. Q . 2 K]. = [W/m . 1-11 . UA . 12. hA .. = 100.. 1-11.

三田村輝章 建築環境工学Ⅱ 第5回 建築伝熱(5) 定常室温の計算法 1

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Transcription of 建築環境工学 - maebashi-it.ac.jp

1 5 5 .. 1.. Q . UA hA . UA hA .. 2. 1/3 .. = [W]. K [W/m2 K] S [m2]. qi [ ] qo [ ]. = [W].. 3. 2/3 .. = [W]. K [W/m2 K] S [m2]. qi [ ] SAT [ ]. = [W].. SAT . SAT . 4. 3/3 .. 5. 1/3 .. = + .. = + . = [W]. V . [m3/s]. 1 . [ /s]. = /3,600. n . 1 [m3/h] [m3] . 1 . 6.. 30 m3 30 m3.. 10 m2 30 m2. 30 m3 90 m3. 30 30 [ /h] 30 90 [ /h].. 7. 2/3 .. = + . [W/K].. So [m2] . Q Q . 8. 9. 3/3 . Q Q .. 2 K]. = [W/m . 1 [ ] .. Q . 10. UA 1/2 .. = [W/K] = + .. = .. 2 K]. = [W/m . 11. UA 2/2 .. Q . 2 K]. = [W/m . 1-11 . UA . 12. hA .. = 100.. 1-11.

2 HA . 13. 14. 25 15. 25 16. 25 17. 1/2 .. 1 . qi . qref Hg . qv H . = = + + [W].. qi . qv + + . = + [ ] .. 18. 2/2 . + + . = + [ ].. qi . qi qid . H H . = [W]. 19. 6-11 . A Q . n= [ /h] . 3mm Kwin = [W/m2 K] KR = [W/m2 K] . KW = [W/m2 K] KF = [W/m2 K]. Swin 2 2 [m2]. KwinSwin [W/K]. KRSR 5 10 [W/K]. KWSW 10 4 2 5 4 2 [W/K]. KFSF 5 10 [W/K]. cp V 5 10 4 [W/K]. = + . = [W/K]. = = = [W/m2 K]. 5 10. 20. 1/4 . [W/K] . H [W] C [J/K] . qi [ ] qo [ ] t [s] . = [J].. =.. 21. 2/4 .. =.. t=0 qi =qo .. = + 1 .. qi .. = [1/s] .. 22. 3/4 .. qi t=.

3 = + .. qi .. = + . qi [ ].. = + 1 .. qo t=0 t= t=0.. 23. 4/4 . d 6-36 . d .. d . =. d .. 24.. Q . UA hA . UA hA .. 25.


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