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Study on the Optimal Control Strategy for Condensing Side of Chiller Systems

机译:冷水机组冷凝侧最优控制策略研究

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The performance curves of typical chillers available from the present market are investigated. These performance curves are fitted to develop a chiller model, which together with pump and cooling tower models are used to study the optimal control strategy for condensing side of chiller systems. The optimization objective is to minimize the total energy use of chillers, condensing pumps, and cooling tower fans. The optimization problem is solved by traversing all possible combinations of chiller water flow rates, cooling tower air flow rates, and ambient air wet-bulb temperatures. Then the optimal solutions are analyzed to find out applicable rule-based control strategies that are not far from optimal solutions and reliable as well. The rule-based control strategy is to keep one or two constant cooling water flow rates during whole operational season according to the number of running chillers and to keep cooling tower air flow rate at a constant ratio to cooling water flow rate. Because this rule-based control strategy does not use sensor measured data, such as wet-bulb air temperature, it is free of sensor faults and can be more robust and reliable than the currently used control strategies, most of which use cooling water temperature or ambient air wet-bulb temperature to decide the cooling water flow rate or air flow rate of cooling tower fans.
机译:研究了可从当前市场获得的典型冷却器的性能曲线。拟合这些性能曲线以开发冷却器模型,该模型与泵模型和冷却塔模型一起用于研究冷却器系统冷凝侧的最佳控制策略。优化目标是最大程度地减少冷却器,冷凝泵和冷却塔风扇的总能耗。通过遍历冷却器水流量,冷却塔空气流量和周围空气湿球温度的所有可能组合来解决优化问题。然后分析最佳解决方案,以找出适用的基于规则的控制策略,这些策略与最佳解决方案相距不远且可靠。基于规则的控制策略是根据运行中的冷却器的数量在整个运行季节中保持一两个恒定的冷却水流量,并使冷却塔的空气流量与冷却水流量保持恒定的比率。由于此基于规则的控制策略不使用传感器测量数据(例如湿球空气温度),因此它没有传感器故障,并且比当前使用的控制策略(其中大多数使用冷却水温度或环境空气湿球温度决定冷却水流量或冷却塔风扇的空气流量。

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