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首页> 外文期刊>Science and Technology for the Built Environment >A systematic and probabilistic approach for optimal design and on-site adaptive balancing of building central cooling systems concerning uncertainties
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A systematic and probabilistic approach for optimal design and on-site adaptive balancing of building central cooling systems concerning uncertainties

机译:一种系统和概率的探讨方法,用于建立不确定因素的中央冷却系统的现场自适应平衡

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摘要

In current design practice, chillers and pumps are often oversized due to conservative consideration of uncertainties using safety factors to avoid the risk of undersizing, which often results in significant energy waste in operation. In recent years, probabilistic optimal design methods have been proposed for the components of cooling systems, enabling risk-based decision-making rather than sizing systems with safety margins to consider uncertainties. However, approaches for probabilistic optimal design and balancing of entire cooling systems are still absent. This article therefore presents a systematic approach of probabilistic optimal design and adaptive balancing for central cooling systems of buildings to minimize the impacts (energy waste and increased life-cycle cost) of oversizing in operation. The probabilistic optimal design considers both the uncertainties of design inputs and the flexibility of on-site adaptive balancing, while adaptive balancing enables flexible balancing to maximize energy saving according to characteristics of constructed systems. A case study is conducted to test and validate the proposed approach. Results show that significant cost reduction and energy saving were achieved for chillers and pumps, respectively, through the systematic approach of probabilistic design and adaptive balancing. Energy consumption of pumps was reduced by 41% through coordinating pump design with probabilistic chiller design.
机译:在当前的设计实践中,由于使用安全因素的不确定性的保守考虑,冷却器和泵通常超大,以避免尺寸过度的风险,这通常会导致操作中的显着能量浪费。近年来,已经提出了用于冷却系统的组件的概率最佳设计方法,使基于风险的决策而不是安全利润率来考虑不确定性的尺寸。然而,仍然不存在概率的最佳设计和平衡的方法。因此,本文介绍了建筑物的中央冷却系统的概率最优设计和自适应平衡的系统方法,以最大限度地减少操作中超大的影响(能量浪费和增加的生命周期成本)。概率最优设计考虑了设计输入的不确定性以及现场自适应平衡的灵活性,而自适应平衡使得能够灵活平衡以最大化根据构造系统的特性的节能。进行案例研究以测试和验证所提出的方法。结果表明,通过概率设计和自适应平衡,分别为冷却器和泵实现了显着的成本减少和节能。通过使用概率冷却器设计协调泵设计,泵的能量消耗降低了41%。

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