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Optimization of water-cooled chiller system with load-based speed control

机译:基于负载的速度控制优化水冷式制冷机系统

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This study investigates the energy performance of chiller and cooling tower systems integrated with variable condenser water flow and optimal speed control for tower fans and condenser water pumps. Thermodynamic-behaviour chiller and cooling tower models were developed to assess how different control methods of cooling towers and condenser water pumps influence the trade-off between the chiller power, pump power, fan power and water consumption under various operating conditions. Load-based speed control is introduced for the tower fans and condenser water pumps to achieve optimum system performance. With regard to an example chiller system serving an office building, the optimal control coupled with variable condenser water flow could reduce the annual system electricity use by 5.3% and operating cost by 4.9% relative to the equivalent system using constant speed fans and pumps with a fixed set point for cooling water temperature control.
机译:这项研究研究了冷却器和冷却塔系统的能源性能,该系统结合了可变的冷凝器水流量和塔扇和冷凝器水泵的最佳速度控制。开发了热力行为冷却器和冷却塔模型,以评估不同操作条件下冷却塔和冷凝器水泵的不同控制方法如何影响冷却器功率,泵功率,风扇功率和水消耗之间的权衡。为塔式风机和冷凝器水泵引入了基于负载的速度控制,以实现最佳的系统性能。对于为办公大楼服务的示例冷却器系统,相对于使用等速风扇和泵的等效系统,最佳控制与可变冷凝器水流量相结合可以使年度系统用电量减少5.3%,运营成本减少4.9%。冷却水温度控制的固定设定点。

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