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Wind tunnel and numerical data on the ventilation performance of windcatcher with wing wall

机译:风洞及带翼壁捕风器通风性能的数值数据

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The data presented in this article were the basis for the study reported in the research articles entitled “Evaluation of a two-sided windcatcher integrated with wing wall (as a new design) and comparison with a conventional windcatcher” (P. Nejat, J.K. Calautit, M.Z.A. Majid, B.R. Hughes, I. Zeynali, F. Jomehzadeh, 2016) [1] which presents the effect of wing wall on the air flow distribution under using the windcatchers as a natural ventilation equipment. Here, we detail the wind tunnel testing and numerical set-up used for obtaining the data on ventilation rates and indoor airflow distribution inside a test room with a two-sided windcatcher and wing wall. Three models were integrated with wing wall angled at 30°, 45° and 60° and another windcatcher was a conventional two-sided device. The computer-aided design (CAD) three-dimensional geometries which were produced using Solid Edge modeler are also included in the data article.
机译:本文中提供的数据是研究文章“对带有机翼壁的双面防风罩的评估(作为一种新设计)以及与传统防风罩的比较”中报告的基础(P. Nejat,JK Calautit ,MZA Majid,BR Hughes,I。Zeynali,F。Jomehzadeh,2016)[1]介绍了在使用挡风板作为自然通风设备的情况下,机翼壁对气流分布的影响。在这里,我们详细介绍了风洞测试和数值设置,用于获取带有双面捕风器和机翼壁的测试室内的通风率和室内气流分布的数据。三种模型的机翼壁成30°,45°和60°角,而另一种捕风器是传统的双面设备。数据文章中还包括使用Solid Edge建模器生成的计算机辅助设计(CAD)三维几何图形。

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