带有水平布置传热装置的商用捕风器性能研究。

J. Calautit, Dominic O’Connor, B. Hughes, S. Shahzad
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引用次数: 3

摘要

本研究的目的是进行数值计算流体力学(CFD)和实验分析的性能水平布置传热装置(HHTD)的捕风器在炎热气候条件下。使用3D打印技术制作了详细的实验原型,并在闭环低速风洞中进行了测试。在数值模拟中再现了风洞试验装置的精确几何形状。对送风速度进行了实测,并与数值数据进行了比较,发现两者具有良好的相关性。进行了流动可视化测试,以分析设备内和通风空间内的气流。数值分析结果表明,在不同的室外条件下,带HHTD的捕风器可以在小气候条件下将空气温度降低12 K。这里介绍的技术受制于英国专利申请(1321709.6)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Investigation of a Commercial Wind Catcher with Horizontally-Arranged Heat Transfer Devices (HHTD).
The aim of this study was to conduct numerical Computational Fluid Dynamics (CFD) and experimental analysis of the performance of a wind catcher with Horizontally-arranged Heat Transfer Devices (HHTD) for hot climate conditions. A detailed experimental prototype was created using 3D printing and tested in a closed-loop low speed wind tunnel. An accurate geometrical representation of the wind tunnel test setup was recreated in the numerical modeling. The airflow supply velocity was measured and compared with the numerical data and good correlation was observed. Flow visualisation testing was conducted to analyse the airflow within the device and also inside the ventilated space. The results of the numerical analysis showed that the wind catcher with HHTD was capable of reducing the air temperature by up to 12 K within the micro-climate depending on the outdoor conditions. The technology presented here is subject to a UK patent application (1321709.6).
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