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Retrofit of a wet cooling tower in order to reduce water and fan power consumption using a wet/dry approach

机译:使用湿/干法降低水和风扇功耗的湿冷塔的改造

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A Parallel Path Wet/Dry configuration and a high-precision airflow regulation method are implemented in order to retrofit an existing wet cooling tower. The modifications are intended to reduce water requirements and fan power consumption of a 12-cell wet tower. The proposed method of airflow control takes advantage of fans with variable frequency drive to regulate airflow with high accuracy. A number of simulations are carried out to predict different operating factors of the wet and hybrid towers. Experimentally obtained values of water consumption demonstrate the validity of those obtained using the computer simulations. According to the results, the accurate airflow control prevents sudden fluctuations in requisite fan power and water consumption rate and causes up to 64.6% decrease in fan power consumption. The results reveal that using the proposed wet/dry approach results in an average 9.4% decrease in water consumption. Given the relatively low degree of modifications made to the original wet tower and preserving the condenser operating condition, the accomplished amount of water conservation is satisfactory. (C) 2017 Elsevier Ltd. All rights reserved.
机译:实施平行路径湿/干燥配置和高精度气流调节方法以改造现有的湿冷塔。修改旨在降低12细胞湿塔的水需求和风扇功耗。所提出的气流控制方法利用具有可变频率驱动器的风扇来调节高精度的气流。进行了许多模拟以预测湿和混合塔的不同操作因素。实验获得的耗水值证明了使用计算机模拟获得的有效性。根据结果​​,精确的气流控制可防止必要风扇功率和耗水率的突然波动,并导致风扇功耗降低高达64.6%。结果表明,使用所提出的湿/干法导致含水量的平均降低9.4%。鉴于对原始湿塔进行的相对较低程度的修改,并保持冷凝器操作条件,所以完成的水养护量令人满意。 (c)2017 Elsevier Ltd.保留所有权利。

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