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Advanced wet-dry cooling tower concept

机译:先进的干湿冷却塔概念

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摘要

The purpose of this years' work has been to test and analyze the new dry cooling tower surface previously developed. The model heat transfer test apparatus built last year has been instrumented for temperature, humidity and flow measurement and performance has been measured under a variety of operating conditions. Tower Tests showed approximately 40-50% of the total energy transfer as taking place due to evaporation. This can be compared to approximately 80 to 85% for a conventional wet cooling tower. Comparison of the model tower test results with those of a computer simulation has demonstrated the validity of that simulation and its use as a design tool. Computer predictions have been made for a full-size tower system operating at several locations. Experience with this counterflow model tower has suggested that several design problems may be avoided by blowing the cooling air horizontally through the packing section. This crossflow concept was built from the previous counterflow apparatus and included the design and fabrication of new packing plates. Instrumentation and testing of the counterflow model produced data with an average experimental error of 10%. These results were compared to the predictions of a computer model written for the crossflow configuration. In 14 test runs the predicted total heat transfer differed from the measured total heat transfer by no more than 8% with most runs coming well within 5%. With the computer analogy's validity established, it may now be used to help predict the performance of fullscale wet-dry towers.
机译:这项工作的目的是测试和分析先前开发的新型干式冷却塔表面。去年制造的模型传热测试设备已进行温度,湿度和流量测量的仪器,并且已在各种运行条件下测量了性能。塔式测试表明由于蒸发而发生的总能量转移约为40-50%。相比之下,传统的湿式冷却塔约为80%到85%。模型塔测试结果与计算机仿真结果的比较证明了该仿真的有效性及其作为设计工具的用途。已经对在多个位置运行的全尺寸塔式系统进行了计算机预测。该逆流模型塔的经验表明,通过水平吹过填料段的冷却空气可以避免一些设计问题。这种错流概念是从以前的逆流设备构建的,包括新填料板的设计和制造。逆流模型的检测和测试产生的数据具有10%的平均实验误差。将这些结果与针对横流配置编写的计算机模型的预测进行了比较。在14个测试运行中,预测的总传热与测量的总传热相差不超过8%,大多数运行都在5%以内。建立了计算机类比的有效性之后,它现在可用于帮助预测全尺寸干塔的性能。

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