LI Baizhan, ZHUANG Chunlong, DENG Anzhong, et al. Improvement of Indoor Thermal Environment in Light Weight Building Combining Phase Change Material Wall and Night Ventilation[J]. Journal of Civil and Environmental Engineering, 2009, 31(3): 109-113.
DOI:
LI Baizhan, ZHUANG Chunlong, DENG Anzhong, et al. Improvement of Indoor Thermal Environment in Light Weight Building Combining Phase Change Material Wall and Night Ventilation[J]. Journal of Civil and Environmental Engineering, 2009, 31(3): 109-113. DOI: 10.11835/j.issn.1674-4764.2009.03.020.
Improvement of Indoor Thermal Environment in Light Weight Building Combining Phase Change Material Wall and Night Ventilation
Comparative experiments of indoor thermal environment were undertaken
with night ventilation
in lightweight buildings with Phase Change Material (PCM) and without PCM. And the lightweight building fabric with PCM is made of selfmaking compound organic PCM and attached with EPS. Analysing the influence of PCM dosage
phase change temperature and PCM wall structure on the PCM wall performance of heat storage and release and indoor thermal environment
it was shown that the thermal inertia of enclosure could be advanced with PCM and indoor thermal comfort could be improved as well. With the night ventilation
the heat accumulated in daytime could be released outdoor. And the maximum indoor temperature decreased 11 ℃ in PCM building compared with that in common building
which met the third grade requirement from spatial and indoor environmental parametric requirements for camping (GJB 4306-2002) and held remarkable energy efficient potential. With regard to the influencing factors
dosage and phase change temperature were the key factors. And with different phase change temperatures
the temperature difference could be increased from 3 ℃ to 11 ℃ when PCM dosage doubles. Optimization design of Phase change temperature and dosage could improve the PCM performance effectively.