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New method for the design of radiant floor cooling systems with solar radiation

机译:设计具有太阳辐射的辐射地板冷却系统的新方法

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摘要

Impacts of solar shortwave radiation are not taken into account in the standardized design methods in the current radiant system design guidelines. Therefore, the current methods are not applicable for cases where incident solar is significant. The goals of this study are to: (1) use dynamic simulation tools to investigate the impacts of solar radiation on floor cooling capacity, and (2) develop a new simplified method to calculate radiant floor cooling capacity when direct solar radiation is present. We used Energy Plus to assess the impacts of solar for different design conditions. The simulation results showed that the actual cooling capacities are in average 1.44 times higher than the values calculated with the ISO 11855 method, and 1.2 times higher than the ASHRAE method. A simplified regression model is developed to improve the predictability of ISO methods. The new model calculates the increased capacity as a function of the zone transmitted solar and the characteristic temperature difference between the hydronic loop and room operative temperature. (C) 2016 Elsevier B.V. All rights reserved.
机译:当前辐射系统设计指南中的标准化设计方法未考虑太阳短波辐射的影响。因此,当前方法不适用于入射太阳光很大的情况。这项研究的目的是:(1)使用动态仿真工具研究太阳辐射对地板制冷量的影响,以及(2)开发一种新的简化方法来计算存在直接太阳辐射时的辐射地板制冷量。我们使用Energy Plus评估了不同设计条件下太阳能的影响。仿真结果表明,实际冷却能力平均比使用ISO 11855方法计算的值高1.44倍,比ASHRAE方法的平均值高1.2倍。开发了简化的回归模型以提高ISO方法的可预测性。新模型计算出的增加的容量取决于太阳能传输区域以及循环回路与室内工作温度之间的特征温差。 (C)2016 Elsevier B.V.保留所有权利。

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