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Energy efficient control of variable speed pumps in complex building central air-conditioning systems

机译:复杂建筑中央空调系统中变速泵的节能控制

摘要

This paper presents the optimal control strategies for variable speed pumps with different configurations in complex building air-conditioning systems to enhance their energy efficiencies. Through a detailed analysis of the system characteristics, the pressure drop models for different water networks in complex air-conditioning systems are developed and then used to formulate an optimal pump sequence control strategy. This sequence control strategy determines the optimal number of pumps in operation taking into account their power consumptions and maintenance costs. The variable speed pumps in complex air-conditioning systems can be classified into two groups: the pumps distributing water to terminal units and pumps distributing water to heat exchanges. The speeds of pumps distributing water to terminal units are controlled by resetting the pressure differential set-point using the online opening signals of water control valves. The speeds of pumps distributing water to heat exchanges are controlled using a water flow controller. The performances of these strategies are tested and evaluated in a simulated virtual environment representing the complex air-conditioning system in a super high-rise building by comparing with that of other reference strategies. The results showed that about 12-32% of pump energy could be saved by using these optimal control strategies.
机译:本文提出了复杂建筑空调系统中不同配置的变速泵的最佳控制策略,以提高其能效。通过对系统特性的详细分析,建立了复杂空调系统中不同供水网络的压降模型,然后用于制定最佳的泵顺序控制策略。这种顺序控制策略考虑到其功率消耗和维护成本,确定了运行中的最佳泵数量。复杂空调系统中的变速泵可分为两类:将水分配给终端设备的泵和将水分配给热交换的泵。通过使用水控制阀的在线打开信号来重置压力差设定点,来控制将水分配到终端单元的泵的速度。使用水流控制器控制将水分配给热交换的泵的速度。通过与其他参考策略进行比较,在代表超高层建筑中复杂空调系统的模拟虚拟环境中测试和评估了这些策略的性能。结果表明,使用这些最佳控制策略可以节省大约12-32%的泵能量。

著录项

  • 作者

    Ma Z; Wang S;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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