Energy and economic performance optimization of a window with variable transparency shape-stabilized PCM in hot summer and cold winter climate zone

透明度(行为) 寒冷的冬天 环境科学 变量(数学) 气候模拟 气候变化 气候学 气象学 窗口(计算) 大气科学 气候模式 计算机科学 地理 数学 生态学 地质学 生物 操作系统 数学分析 计算机安全
作者
Hangming Zhang,Ling Zhang,Yue Zheng,Zhongbing Liu
出处
期刊:Indoor and Built Environment [SAGE]
卷期号:33 (8): 1471-1485 被引量:1
标识
DOI:10.1177/1420326x241244525
摘要

Improving the thermal performance of windows is important for building energy efficiency. Filling windows with variable transparency shape-stabilized phase change materials (VTSS-PCM) improves the thermal inertia of windows while avoiding the leakage of PCM. In this paper, a new type of VTSS-PCM window was proposed, tested, simulated and optimized in hot summer and cold winter climate zone. A numerical model of the VTSS-PCM window was built, and the model was validated using experimental tests. On this basis, three key parameters of VTSS-PCM were investigated and optimized. Finally, the energy and economic performance of the optimized VTSS-PCM window were compared with a typical hollow glass window. The results showed that the total annual unfavourable heat transfer (TAHT) and the annual investment cost (AIC) of the VTSS-PCM window obtained from the optimization were 118.16 kWh/m 2 and 8.53 CNY/m 2 , respectively. Compared with the hollow glass window, the VTSS-PCM window reduced the TAHT by 30.14% and the total annual cost by 28.39%. The VTSS-PCM window produced a better development potential in terms of energy performance and economic performance. This study provided a reference for the application of the VTSS-PCM window in hot summer and cold winter regions of China.
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