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A fault-tolerant and energy efficient control strategy for primary-secondary chilled water systems in buildings

机译:建筑物中一次-二次冷冻水系统的容错和节能控制策略

摘要

Primary-secondary chilled water systems with decoupled bypass in building air-conditioning often cannot work in healthy condition as desired in practical operation, due to excess secondary flow demand resulting in deficit flow in the bypass line. This paper presents a fault-tolerant and energy efficient control strategy for secondary chilled water pump systems to solve this operation and control problem providing enhanced operation performance and energy efficiency of chilled water systems. The strategy employs the flow-limiting technique that ensures the water flow of secondary loop not exceed that of the primary loop while still maintaining highest possible delivery capacity of cooling to terminals. The strategy is also integrated with a differential pressure set-point optimizer to determine the optimal set-point. The performance of this strategy is evaluated in a simulated real-life environment representing the chilled water system in a super high-rise building by comparing it with two conventional control strategies. Results show that the proposed strategy can effectively eliminate the deficit flow at both starting and normal operation periods. The energy saving in the secondary chilled water pumps can be up to over 70% and 50% at system starting and normal operation periods respectively compared with the other strategies.
机译:由于过多的二次水需求导致旁路管线中的流量不足,在建筑物空调系统中具有分离的旁路的一次-二次冷却水系统通常无法在实际操作中以健康状态工作。本文提出了一种用于二级冷水泵系统的容错和节能控制策略,以解决该运行和控制问题,从而提高了冷水系统的运行性能和能效。该策略采用了限流技术,该技术可确保次级回路的水流量不超过初级回路的水流量,同时仍保持最大的冷却能力。该策略还与压差设定点优化器集成在一起,以确定最佳设定点。通过将该策略与两种常规控制策略进行比较,可以在代表超高层建筑中的冷冻水系统的模拟真实环境中评估该策略的性能。结果表明,所提出的策略可以有效消除启动和正常运行期间的赤字流。与其他策略相比,在系统启动和正常运行期间,二级冷冻水泵的节能分别可高达70%和50%以上。

著录项

  • 作者

    Gao DC; Wang S; Sun Y;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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