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Modeling Airflow through a Perforated Duct

机译:模拟通过穿孔管的气流

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摘要

This paper details experimental measurements and mathematical modeling of airflow through a perforated duct with an open area of 22% that is capped at the end. Measurements were conducted on ducts with uniform diameters of 12,10, and 8 in. (0.30, 0.25, and0.20m).Allductswere20ft(6.10m)long, and inlet flow rates ranged from approximately 350 to 700 cfm (165 to 330 L/s). Flow rates were measured along the length of the duct using the pitot traverse method. The static pressure was also measured. The flow through the duct was modeled assuming one-dimensional flow, and a differential equation was derived using the mass, momentum, and energy equations. The resulting differential equation was solved numerically and the results were compared to the experimental measurements. Good agreement was achieved when comparing the experimental and model flow rates for all test runs with a maximum difference of 14.0% and an average difference of 2.0%. Results for the static pressure showed the same trends between the experiments and the model. The pressure was largest at the capped end of the duct, where the experimental measurements exceeded the model results by a maximum of 21.8%.
机译:本文详细介绍了通过穿孔管的气流的实验测量和数学模型,该穿孔管的末端开口面积为22%。在直径分别为12、10和8英寸(0.30、0.25和0.20m)的管道上进行测量。所有管道长20英尺(6.10m),入口流量范围约为350至700 cfm(165至330 L)。 / s)。使用皮托管横移法测量沿导管长度的流速。还测量了静压。假设是一维流动,则对通过导管的流动进行建模,并使用质量,动量和能量方程式导出微分方程式。对所得的微分方程进行数值求解,并将结果与​​实验测量值进行比较。比较所有测试运行的实验流速和模型流速时,可以达到很好的一致性,最大差异为14.0%,平均差异为2.0%。静压结果在实验和模型之间显示出相同的趋势。管道盖端的压力最大,实验测量值超出模型结果的最大值为21.8%。

著录项

  • 来源
    《ASHRAE Transactions》 |2016年第2期|225-232|共8页
  • 作者单位

    Mechanical Engineering Department at California Polytechnic State University, San Luis Obispo, CA;

    MHC Engineers, Inc., San Francisco, CA;

    Sungevity, Oakland, CA;

    Glenair, Inc., Glendale, CA;

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  • 正文语种 eng
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