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Robust optimal design of chilled water systems in buildings with quantified uncertainty and reliability for minimized life-cycle cost

机译:具有定量不确定性和可靠性的建筑物冷水系统的稳健优化设计,可将生命周期成本降至最低

摘要

Conventional design of chilled water systems is typically based on the peak cooling loads of buildings, while the cooling load reaches its peak level for only a small proportion of time in a year. This results in that design flow of chilled water system could be significantly oversized in actual operation and it thus causes significant energy wastes. In this paper, a robust optimal design based on minimized life-cycle cost is proposed to optimize the design of chilled water pump systems while concerning the uncertainties of design inputs and models as well as the component reliability in operation. Monte Carlo simulation is used to generate the cooling load distribution and hydraulic resistance distribution by quantifying the uncertainties. Markov method is used to obtain the probability distribution of the system state. Under different control methods, this proposed design method minimizes the annual total cost. A case study on a building in Hong Kong is conducted to demonstrate the design process and validate the robust optimal design method. Results show that the system could operate at a relatively high efficiency and the minimum total life-cycle cost could be achieved.
机译:冷却水系统的常规设计通常基于建筑物的峰值制冷负荷,而一年中仅一小部分时间制冷负荷达到峰值。这导致在实际操作中,冷却水系统的设计流程可能会大大超大型,从而造成大量的能源浪费。本文提出了一种基于最小化生命周期成本的鲁棒优化设计,以优化冷水泵系统的设计,同时考虑设计输入和模型的不确定性以及组件的运行可靠性。蒙特卡洛模拟用于通过量化不确定性来生成冷却负荷分布和水力阻力分布。马尔可夫方法用于获得系统状态的概率分布。在不同的控制方法下,该建议的设计方法将年度总成本降至最低。以香港某建筑物为例,以说明设计过程并验证稳健的最佳设计方法。结果表明,该系统可以以相对较高的效率运行,并且可以实现最低的总生命周期成本。

著录项

  • 作者

    Cheng Q; Wang S; Yan C;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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