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Multi-objective optimal design of a solar absorption cooling and heating system under life-cycle uncertainties

机译:生命周期不确定性下太阳能吸收式制冷供暖系统的多目标优化设计

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摘要

SACH systems, as a type of renewable energy systems, meet building cooling and heating demand through solar energy and therefore can reduce energy consumption and, in turn, mitigate the environmental impacts associated with building operation. Many researchers have evaluated and optimized the design of SACH systems under deterministic schemes; however, deterministic approach is subject to uncertain parameters in the evaluation or objective functions such as energy prices in the future and the results subsequently may not hold true. To enhance the design robustness and validate the use of deterministic approaches, a stochastic multi-objective optimization (SMOO) model is developed that incorporates these uncertainties. In this paper, a SACH system is optimized with respects to life-cycle energy, economic, and environment performance. The uncertain parameters considered include the life span of SACH systems and the fluctuations of energy markets and financial conditions. A case study follows to investigate the relationship among uncertainty and different designs. The comparison between deterministic and stochastic optimization shows that deterministic optimization can be used by designers who are moderate or not risk-averse at all.
机译:作为一种可再生能源系统,SACH系统通过太阳能满足建筑物的制冷和供热需求,因此可以减少能耗,进而减轻与建筑物运营相关的环境影响。许多研究人员已经在确定性方案下评估和优化了SACH系统的设计。但是,确定性方法受评估中不确定的参数或将来的能源价格等目标函数的影响,因此其结果可能不成立。为了提高设计的鲁棒性并验证确定性方法的使用,开发了一种包含这些不确定性的随机多目标优化(SMOO)模型。本文针对生命周期的能源,经济和环境性能对SACH系统进行了优化。考虑的不确定参数包括SACH系统的寿命以及能源市场和金融状况的波动。接下来是一个案例研究,以研究不确定性和不同设计之间的关系。确定性优化与随机性优化之间的比较表明,确定性优化可以由中等或完全不规避风险的设计人员使用。

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