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The correction coefficients for the building air-conditioning load accounting for the whole building hygrothermal transfer process for major cities in China

机译:中国主要城市建筑物湿热传递全过程中建筑物空调负荷的校正系数

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摘要

At present, the calculation software and design specifications related to building cooling and heating load are based mainly on heat transfer theory. The effect of building moisture transfer process on the air-conditioning load is rarely researched. The aim of this paper was to investigate the effect of the whole building hygrothermal transfer (WBHT) process on the indoor air temperature and relative humidity, wall inner surface temperature and moisture flux, sensible heat load, latent heat load and total air-conditioning load in different climates. A WBHT model was developed and validated by the analytic solution and experimental data. Three humidity regions in China were classified for summer and winter according to the different outdoor air relative humidity levels. The correction coefficients of air-conditioning load of major cities were obtained accounting for the WBHT process. Our results would provide a future reference for accurately calculating heating and cooling load of buildings in different climate regions.
机译:目前,有关建筑物制冷和供暖负荷的计算软件和设计规范主要基于传热理论。很少研究建筑水分传递过程对空调负荷的影响。本文的目的是研究整个建筑物的湿热传递(WBHT)过程对室内空气温度和相对湿度,墙内表面温度和湿气通量,显热负荷,潜热负荷和总空调负荷的影响在不同的气候下。建立了WBHT模型,并通过分析解决方案和实验数据进行了验证。根据室外空气相对湿度的不同,将中国的三个湿度区域分为夏季和冬季。根据WBHT过程,获得了主要城市的空调负荷校正系数。我们的结果将为将来准确计算不同气候区域建筑物的供热和制冷负荷提供参考。

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