Çiğlenme noktası hesap sonuçlarının, T.S.E. 825'e göre önerilen tip duvar kesitleriyle mukayesesi ve yoğuşma nedeni
Comparison of the results of dew point calculation with wall sections proposed according to TSE 825 and condensation control
- Tez No: 39785
- Danışmanlar: PROF.DR. İMER SUNGUROĞLU
- Tez Türü: Yüksek Lisans
- Konular: Mimarlık, İnşaat Mühendisliği, Architecture, Civil Engineering
- Anahtar Kelimeler: Belirtilmemiş.
- Yıl: 1994
- Dil: Türkçe
- Üniversite: İstanbul Teknik Üniversitesi
- Enstitü: Fen Bilimleri Enstitüsü
- Ana Bilim Dalı: Belirtilmemiş.
- Bilim Dalı: Belirtilmemiş.
- Sayfa Sayısı: 102
Özet
Follouing this study the proposals relating to the walls that have problems from dew and condenstaion, have been analysed in this section. xn
Özet (Çeviri)
CDMPARISDN DF THE RESULTS GF DEM PDINT CALCULATTON UITH lıIALL SECTTGNS PROPGSED ACCDRDING TO TSE 825 AND CONDENSAHON CONTROL SUMMARY rt is obvious that variaus places should ensure the camfortable conditians uhich people raquire far these places. Also, temperature and relative humidity are required for sheltering animals, praductian, and keeping of variaus abjects. Dnly building envalape ensures climatic indaor camfdrt. in this study auter ualls are anly discussed in the building structure. Ona af the purpases af this study is ta ensure the canditians af climatic indaar camfart and the saving of energy simultaneously. Tha main purpase is ta remave the negatians create by deu and candensatian in vieu af pratecting the building by preventing detd and candensatian. The purpase af this is ta explain in uhich sites there accurs deu on the ualls accarding ta TSE (Institute of Turkish Standarda) 825. Quantities of condenstaion are declared by checking the condensation in buildings. in the first part of the study, the abjective and range of this research is explained. The object of this study is ta cantral deu and condens.ation on the typical ualls uhich is proposed accarding fa TSE 825. Range of the study; Deu cantral uas done carried aut an ali the sites shoun in Table C.2, and the typical ualls propased accarding to TSE B25. in the buildings hauever, candensatian uas controlled separately. The concepts that are related uith other parts of the research are explained in the second part af this study. vııThe types of heat transfer uhich are knouın as heat conduction, heat convection, and heat radiation are introduced. Also, general equations related uith heat transmission are given a's noted belouj. Heat transfer deby: q = k. (T._- Td), U/m2 üJhere; k isthe canductivity afheat, U/m°K T. isinner temperature,K T, isouter temperature,K q isthe heat transfer, Resistance af heat transfer; 1d,Û7dn= -l+^- ++-2-, m2K/lıJ AX>|Â 2X n UJhere, 1 //\ is the resistance af heat transfer, mzK/lü dis the thickness af uıall material, m X is the value af thermel canductian af material, Ld/m°K and alsa; - \= _J+ __!+ _Jf mzK/QJ k°
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