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Mathematical model for multiple cooling tower plumes

机译:多个冷却塔羽流的数学模型

摘要

A mathematical model is developed resulting in a computer program for the prediction of the behavior of plumes from multiple cooling towers with multiple cells. A general integral method based on the conservation of mass, momentum, energy (heat), and moisture fluxes (before and after plume merging), were employed in the prediction scheme. The effects of ambient stratifications of temperature, moisture, and wind are incorporated in the model. ududAn axisymmetric round plume is assumed to be emitted from each individual cell before interference with neighboring plumes. A finite length slot plume in the central part and two half round plumes at both ends of the merged plume were used to approximate the plume after merging. The entrainment and drag functions are calculated based on the modified merged plume shape. ududThe computer output provides the predicted plume properties such as excess plume temperature, humidity and liquid phase moisture (water droplet), plume trajectory, width, and dilution at the merging locations and the beginning and ending points of the visible part of the plumes. Detailed printout and contour plots of excess temperature and moisture distribution can also be obtained if desired. ududBased on comparison with laboratory data this model gives good predictions for the case of dry plumes (no moisture involved). It should be noted that several empirical coefficients are as yet not accurately known. Verification of this model for the wet plume (such as for prototype cooling tower plumes) and the determination of the values for these empirical coefficients to be used in prototype applications must await detailed comparison with field data.
机译:开发了数学模型,从而生成了计算机程序,用于预测来自具有多个单元的多个冷却塔的羽流行为。在预测方案中,采用了基于质量,动量,能量(热)和湿气通量(羽流合并之前和之后)守恒的通用积分方法。在模型中考虑了温度,湿度和风的环境分层的影响。 ud ud假定在干扰相邻羽流之前,每个单独的单元均发出轴对称的圆形羽流。合并后的羽状流的中心部分使用有限长度的狭缝羽状流,并在合并羽状流的两端使用两个半圆形羽状流。夹带和阻力函数是根据修改后的合并羽状形状计算的。 ud ud计算机输出可提供预测的羽流特性,例如羽流温度过高,湿度和液相水分(水滴),羽流轨迹,宽度以及在合并位置以及可见部分起点和终点的稀释度。羽毛。如果需要,还可以获取多余温度和水分分布的详细打印输出和轮廓图。 ud ud基于与实验室数据的比较,该模型可以很好地预测干羽(不涉及水分)的情况。应当指出的是,还没有准确地知道几个经验系数。验证该模型是否为湿羽流(例如用于原型冷却塔羽流),以及确定用于原型应用的这些经验系数的值,必须等待与现场数据进行详细比较。

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  • 作者单位
  • 年度 1977
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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