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首页> 外文期刊>Journal of Structural Engineering >Interference factors for natural draught cooling towers based on wind tunnel experiments
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Interference factors for natural draught cooling towers based on wind tunnel experiments

机译:基于风洞实验的自然通风冷却塔干扰因素

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Wind tunnel experiments were conducted under simulated terrain category 2 for evaluating interference factors using pressure models on four sets of cooling tower models, each when located in tandem. The full-scale dimensions of the cooling towers are 180 m, 165 m, 173m, and 143 m heights with diameters at throat, D_(th), of 79 m, 71 m, 70 m and 61m, respectively. The tower corresponding to 165 m height had a geometric scale of 1:500 and the rest of the models corresponded to 1:300 scale. The model of 165 m tall cooling tower was additionally tested under increased turbulence intensity corresponding to terrain category 3. The tests were conducted for various non dimensionalised spacing, r=a/D_m, ranging from 1.4 to 10, where a is the c/c distance between the models and D_m is the mean diameter, denned as the mean of bottom diameter and D_(th),. Measurement of pressures was carried out at 30° interval at four levels for all the models. The paper consolidates the data base of experiments conducted at CSIR-SERC to see whether there is a discerning pattern in interference factors that can be recommended for design.
机译:在模拟地形类别2下进行风洞实验,以使用压力模型对四套冷却塔模型进行评估,以评估干扰因素,每套冷却塔模型均串联放置。冷却塔的全尺寸尺寸为高度180 m,165 m,173m和143 m,其在喉部的直径D_th分别为79 m,71 m,70 m和61m。高度为165 m的塔的几何比例为1:500,其余模型的比例为1:300。此外,还在对应于地形类别3的增加的湍流强度下对165 m高的冷却塔模型进行了测试。测试针对各种无量纲的间距r = a / D_m,范围为1.4至10,其中a为c / c模型与D_m之间的距离为平均直径,定义为底部直径和D_(th)的平均值。对于所有模型,压力测量以30°的间隔在四个级别上进行。本文巩固了CSIR-SERC进行的实验数据库,以查看是否存在可建议设计的干扰因素识别模式。

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