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Optimization Design of Marine Waste Heat Recovery System based on PSO-GA Algorithm

机译:基于PSO-GA算法的海洋废热回收系统优化设计

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Energy saving is the best way to energy exploitation and environment protection, especially in the case of the low carbon economy. In this paper, a hybrid approach combining particle swarm optimization (PSO) and genetic algorithms (GA) is developed for optimization design of marine waste heat recovery system. Based on exergy analysis method, the waste heat utilization degree of the marine waste heat recovery system is discussed. Considering the superheated steam temperature, evaporation temperature, economizer inlet temperature, water supply temperature and condensation temperature, a mathematical model is constructed in which the exergy efficiency of marine waste heat recovery system is taken as the objective function for optimization design of marine waste heat recovery system. The mutation operator of GA is introduced to the PSO to solve the mathematical model of marine waste heat recovery system for the diversity of particles. The effectiveness of the approach is illustrated by an optimization example.
机译:节能是能源开发和环境保护的最佳方式,特别是在低碳经济的情况下。本文开发了一种混合方法组合粒子群优化(PSO)和遗传算法(GA),用于船舶废热回收系统的优化设计。基于漏洞分析方法,讨论了海洋废热回收系统的废热利用程度。考虑到过热的蒸汽温度,蒸发温度,经济型入口温度,供水温度和冷凝温度,构建了一种数学模型,其中船舶废热回收系统的漏洞效率被视为船舶垃圾热回收优化设计的目标函数系统。 Ga的突变算子被引入PSO,以解决船舶储层热回收系统的数学模型,以实现颗粒的多样性。通过优化示例说明了该方法的有效性。

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