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Energy and Mass Transfer Phenomena in Natural Draft Cooling Towers

机译:自然通风冷却塔中的能量和传质现象

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In this paper, the development of natural draft cooling towers diagnostics is presented. Diagnostic method is based on measurements of velocity and temperature fields of the airflow in the entire surface area of cooling tower and the raised phenomenological model of heat and mass transfer in a selected reference vertical segment of cooling tower. Velocity and temperature fields of the airflow were measured with the aid of a remote control mobile robot unit that was developed to enable measurements in an arbitrary measurement point above the spray zones over the entire cooling tower area. Topological structures of the humid air velocity profiles and temperature profiles above the spray zones were obtained at constant integral parameters of a power plant. Measurement results of temperature and mass flow characteristics of the air and water flows in a selected reference vertical segment of cooling tower are presented in the form of phenomenological dependence. Phenomenological dependence links local cooling tower efficiency, geometrical characteristics of spray elements, and air and water flow rates. In the concluding part, both methods are applied together on a selected segment of cooling tower, and local and integral cooling tower efficiency can be determined.
机译:本文介绍了自然通风冷却塔诊断技术的发展。诊断方法基于对冷却塔整个表面积中气流的速度和温度场的测量,以及在选定的冷却塔参考垂直段中传热和传质的上升现象学模型。借助可移动远程控制的机器人装置测量气流的速度和温度场,该机器人装置可在整个冷却塔区域内喷雾区域上方的任意测量点进行测量。在发电厂的恒定积分参数下获得了喷雾区域上方的湿空气速度剖面和温度剖面的拓扑结构。以现象学相关性的形式给出了冷却塔所选参考垂直段中空气和水流的温度和质量流量特性的测量结果。现象学相关性将局部冷却塔效率,喷雾元件的几何特征以及空气和水的流速联系起来。在最后部分,将这两种方法一起应用到冷却塔的选定部分,可以确定局部和整体冷却塔的效率。

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