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Wind tunnel data of the analysis of heat pipe and wind catcher technology for the built environment

机译:建筑环境热管和集热器技术分析中的风洞数据

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The data presented in this article were the basis for the study reported in the research articles entitled ‘Climate responsive behaviour heat pipe technology for enhanced passive airside cooling’ by Chaudhry and Hughes which presents the passive airside cooling capability of heat pipes in response to gradually varying external temperatures and related to the research article “CFD and wind tunnel study of the performance of a uni-directional wind catcher with heat transfer devices” by Calautit and Hughes which compares the ventilation performance of a standard roof mounted wind catcher and wind catcher incorporating the heat pipe technology. Here, we detail the wind tunnel test set-up and inflow conditions and the methodologies for the transient heat pipe experiment and analysis of the integration of heat pipes within the control domain of a wind catcher design.
机译:本文提供的数据是Chaudhry和Hughes题为“气候响应行为热管技术以增强被动空气侧冷却”的研究文章所报道的研究的基础,该论文介绍了热管响应逐渐变化而产生的被动空气侧冷却能力外部温度,并与Calautit and Hughes的研究文章“带有传热装置的单向集热器性能的CFD和风洞研究”相关,该文章比较了标准屋顶安装的集热器和结合了该功能的集热器的通风性能热管技术。在这里,我们详细介绍了风洞测试的设置和流入条件,以及用于瞬态热管实验的方法,以及在集热器设计的控制域内对热管集成进行分析的方法。

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