Analysis of Heat Transfer by Thermal Bridge of Corner Wall in a New Glass Regenerated Pumice External Wall System

Article Preview

Abstract:

This paper was based on heat insulating members made by a new type of waste glass regenerative pumice, with the characteristics of light weight, permeable water retention, ventilation, heat insulation, fire retardant, etc. In the external wall heat insulating system of building envelops, the thermal bridge of external wall corner was simulated with ANSYS. The temperature field and flux field distribution will be shown respectively of non-insulation, self-insulation, internal insulation and external insulation. Through comparing the heat preservation of different insulation forms, the external insulation was better than internal insulation and self-insulation. Besides, considering the imperfection of calculating the wall average heat transfer coefficient in current energy saving standards, a simplified method was presented to calculate the linear heat transmission coefficient with ANSYS. The two coefficients were compared to serve the latest research.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

954-959

Citation:

Online since:

February 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Daming Sun, Haizhu Zhou and Huifeng Tian. Research status and prospect of building thermal bridge[J]. BUILDING SCIENCE, 2010(2), 26(2): 128-134 (In Chinese).

Google Scholar

[2] Hua Wen. The analysis of heat transfer in thermal bridge of external wall corner in the enclosure of multi-story building[D]. Harbin: Harbin Engineering University, 2007 (In Chinese).

Google Scholar

[3] Jiaping Liu. Architectural physics(the third edition) [M]. Beijing: CHINA ARCHITECTURE & BUILDING PRESS, 2000 (In Chinese).

Google Scholar

[4] Xiaona Xie and Yi Jiang. Equivalent slabs approach for simulating the thermal performance of thermal bridges in buildings[J]. Journal of Tsinghua University, 2008, 48(6): 909-913(In Chinese).

Google Scholar

[5] Zengfeng Yan, Haiyan Lin, Hui Zhou and Yueli Liu. Research on steady-state heat transfer calculation of thermal bridge in building envelops[J]. HV & HC, 2007, 37(7): 11-14 (In Chinese).

Google Scholar

[6] JGJ 134-2010 Design standard for energy efficiency of residential buildings in hot summer and cold winter zone[S]. Beijing, CHINA ARCHITECTURE & BUILDING PRESS, (2010).

Google Scholar

[7] Ministry of Construction of the People's Republic of China. JGJ 26-2010 Design standard for energy efficiency of residential buildings in sever cold and cold zones[S]. Beijing, CHINA ARCHITECTURE & BUILDING PRESS, (2010).

Google Scholar

[8] Wei Tan, Zengfeng Yan, Lixin Sun and Haiyan Lin. Calculation on linear heat transfer coefficient of thermal bridges in special shape building envelope by ANSYS[J]. BUILDING SCEINCE, 2008(4), 24(4): 62-66 (In Chinese).

Google Scholar