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首页> 外文期刊>Journal of Architectural Engineering >Experimental Evaluation of Thermal Response and Condensation Performance of Metal Curtain Walls Subjected to Air Leakage
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Experimental Evaluation of Thermal Response and Condensation Performance of Metal Curtain Walls Subjected to Air Leakage

机译:空气泄漏对金属幕墙热响应和冷凝性能的实验评估

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摘要

The condensation resistance of fenestration products is typically determined in standard tests with air leakage eliminated by sealing the cracks and balancing the pressure difference across the test specimen. In reality, however, the fenestration system does experience varying pressure differentials. The infiltration and exfiltration of air can affect the temperature distribution on the fenestration system and, thus, the condensation resistance. In this paper the effect of air leakage on the condensation resistance of a large-scale metal curtain wall subjected to a pressure differential of 150 Pa is studied experimentally. By examining the temperature response profiles and the magnitudes of the temperature variations, likely air leakage paths are identified and the impact of air leakage on condensation resistance is quantified. Since the airtightness of the curtain wall tested is relatively high, the effect of air infiltration is relatively small on the average condensation resistance but is significant locally.
机译:开窗产品的抗凝结性通常在标准测试中确定,通过密封裂缝并平衡试样两端的压差来消除漏气。然而实际上,开窗系统确实经历了变化的压差。空气的渗透和渗透会影响开窗系统上的温度分布,从而影响耐冷凝性。通过实验研究了漏风对大型金属幕墙在150 Pa压差下的抗凝结性的影响。通过检查温度响应曲线和温度变化幅度,可以确定可能的漏气路径,并量化漏气对耐冷凝性的影响。由于所测试的幕墙的气密性相对较高,因此空气渗透对平均耐冷凝性的影响相对较小,但局部影响很大。

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