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DIRECTIONAL AIRFLOW PERFORMANCE OF VENTILATORS FOR NATURAL VENTILATION

机译:天然通风呼吸机的定向气流性能

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The use of natural ventilation systems continues to be a popular feature in low energy, sustainable building design. One feature of natural ventilation is that, depending upon the prevailing climatic or thermal conditions, the airflow through a ventilator can be bi-directional. Aerodynamically, the ventilator, depending upon its construction, may not perform in the same way for the two different flow directions. The geometry of the internal flow-path, the inclination of louver blades and the location of meshes and acoustic linings are features that stop the ventilator being aerodynamically symmetrical for different flow directions. However, in most cases ventilator airflow performance data relate to tests conducted with the ventilator set with an ‘inlet’ configuration. This is partly because ventilator manufacturers are concerned about rain being driven through the ventilator, and so test for this ‘worst case’ scenario. This paper describes a series of experimental measurements on commercial louver ventilators that investigated the influence that flow direction and magnitude of pressure differentials can have on airflow performance. Louver face velocities of 0.05, 0.25 and 0.5 ms-1 were generated in the study. The commercial ventilators were also modelled as CAD files and then imported in to the CFD software FLOVENT v3.2. The experimental data were compared with CFD predicted values of airflow parameters. This analysis tested the feasibility of using CFD / CAD as a tool for designing and optimising the performance of ventilators.
机译:采用自然通风系统,继续成为低能耗,可持续建筑设计一个受欢迎的功能。自然通风的一个特征是,取决于盛行的气候或热的条件下,通过呼吸机的空气流可以是双向的。空气动力学,呼吸机,这取决于其结构,可以不在用于两个不同的流动方向相同的方式来执行。内部流路的几何形状,百叶窗叶片的倾斜和网格和声学衬里的位置是功能停止呼吸机是为不同的流动方向的空气动力学对称。然而,在大多数情况下,通气气流性能数据涉及与呼吸机设置有“入口”的配置进行的测试。这部分是由于呼吸机制造商关注雨正通过呼吸机驱动的,因此检验这种“最坏情况”的场景。本文介绍了在该调查的压差的流动方向和幅度可能对气流性能的影响商业百叶通风的一系列实验测量的。在该研究中产生的0.05,0.25和0.5的MS-1窗板表面的速度。商业呼吸机也被建模为CAD文件,然后到CFD软件的Flovent V3.2进口。实验数据进行了比较用CFD预测的气流参数的值。该分析测试采用CFD / CAD作为设计工具和优化通风性能的可行性。

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