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Robust optimal design of building cooling systems concerning uncertainties using mini-max regret theory

机译:基于最小-最大后悔理论的不确定性建筑物冷却系统的鲁棒优化设计

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摘要

Various uncertainties exist in cooling systems at the plan and design stage. The conventional design method usually selects the cooling system or configurations without considering uncertainties, which may be risky because the performance of the cooling system may deviate from the expected, together with increased cost and reduced benefit due to uncertainties and variations in actual working conditions. A new, simple, and effective method is proposed to optimize the design of cooling systems and get the robust optimal cooling system by considering uncertainties in the information used at the design stage. The mini-max regret theory is used to realize the method. Two important problems in the design of cooling systems are studied: chiller combinations and chilled water pump configurations. By considering the uncertainties in the cooling load, the robust optimal chiller combination can be obtained. By considering the uncertainties in the resistance of chilled water pipelines, the robust optimal chilled water pump configuration can be determined.
机译:在计划和设计阶段,冷却系统存在各种不确定性。常规设计方法通常在不考虑不确定性的情况下选择冷却系统或配置,这可能是有风险的,因为冷却系统的性能可能会偏离预期,并且由于不确定性和实际工作条件的变化而导致成本增加和收益降低。提出了一种新的,简单有效的方法,通过考虑设计阶段所用信息的不确定性来优化冷却系统的设计,并获得鲁棒的最佳冷却系统。该方法采用了极大极小后悔理论。研究了冷却系统设计中的两个重要问题:冷却器组合和冷却水泵配置。通过考虑冷却负荷的不确定性,可以获得鲁棒的最佳冷却器组合。通过考虑冷水管道阻力的不确定性,可以确定可靠的最佳冷水泵配置。

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