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A method for determining the optimum state of recirculating cooling water system and experimental investigation based on heat dissipation efficiency

机译:一种确定循环冷却水系统最佳状态的方法及基于散热效率的实验研究

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摘要

The variation of water and air flow are effective measures for reducing the energy consumption of recirculating cooling water systems. In this paper, a simplified heat dissipation model of a cooling tower was developed. Combining the heat dissipation model with the power models of the power devices, a determination method was proposed to judge the optimality of the current operation state according to the heat dissipation efficiency of the cooling tower. In order to prove the validity of the optimum determination method, an experimental setup of a recirculating cooling system was established, and tests were performed under different conditions. The experimental results show that the heat dissipation calculated by the simplified model is consistent with that obtained from the experimental data, and that the empirical flow rate of water at the optimal point is in accordance with the flow rate of water the optimal point obtained by the optimum determination method. It was revealed that even with a variation of operation parameters of as low as 5.56%, the determination method can effectively identify the state of optimization. The method was able to give an insight into the trend of regulation of the water flow in recirculating cooling water system.
机译:水和空气流的变化是降低再循环冷却水系统的能量消耗的有效措施。在本文中,开发了一种冷却塔的简化散热模型。将散热模型与功率器件的电力模型组合,提出了根据冷却塔的散热效率判断当前操作状态的最优性。为了证明最佳测定方法的有效性,建立了再循环冷却系统的实验设置,并在不同条件下进行测试。实验结果表明,通过简化模型计算的散热耗散与从实验数据中获得的散热,并且在最佳点处的水的经验流速符合水的流速最佳确定方法。据透露,即使具有低至5.56%的操作参数的变化,确定方法也可以有效地识别优化状态。该方法能够深入了解再循环冷却水系统中水流量的调节趋势。

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