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首页> 外文期刊>Journal of Cleaner Production >Thermodynamic and exergoeconomic analyses and optimization of an auxiliary tri-generation system for a ship utilizing exhaust gases from its engine
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Thermodynamic and exergoeconomic analyses and optimization of an auxiliary tri-generation system for a ship utilizing exhaust gases from its engine

机译:利用发动机废气的船舶辅助三代系统的热力学和exergo经济分析及优化

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Utilizing exhaust gases from engines with the goal of heat recovery is recognized as an essential solution to overcome the economic and environmental problems in the energy industry. Hence, the motivation of this study is to design an auxiliary tri-generation system for a ship based on exhaust gases from its engine and implement the smart use technique of the waste heat. Thermodynamic and exergoeconomic analyses are conducted to evaluate the proposed system considering acceptable thermodynamic assumptions. The system consists of a Kalina cycle, an ejector-booster refrigeration cycle, and a humidification dehumidification desalination unit for power, cooling, and freshwater production. A parametric analysis is conducted to illustrate the effect of some design variables on the sum unit cost of products. Also, to achieve the best design of the system, different optimized cases are evaluated based on a genetic algorithm. According to the attained results, employing exhaust gases from a ship's engine through the proposed tri-generation system enhanced the thermodynamic and cost outcomes. So, this is a costeffective and clean production solution to improve the design of a ship. Considering the multiobjective optimization, energy and exergy efficiencies and the sum unit cost of products were 81%, 49%, and 78.6 $/GJ, correspondingly. (C) 2020 Elsevier Ltd. All rights reserved.
机译:利用具有热回收目标的发动机的废气被认为是克服能源行业经济和环境问题的必要解决方案。因此,本研究的动机是为基于来自其发动机的废气的船舶设计一种辅助三进体系统,并实现废热的智能用途技术。考虑可接受的热力学假设,进行热力学和Exergo经济分析以评估所提出的系统。该系统由Kalina循环,喷射器 - 增强剂制冷循环和用于电力,冷却和淡水产生的加湿除湿脱水单元组成。进行参数分析以说明一些设计变量对产品的总和单位成本的影响。此外,为了实现系统的最佳设计,基于遗传算法评估不同的优化案例。根据达到的结果,通过所提出的三代系统从船舶发动机采用废气,增强了热力学和成本结果。因此,这是一种成本效益和清洁的生产解决方案,可以改善船舶的设计。考虑到多目标优化,能源和漏洞效率和产品的总和成本为81%,49%和78.6美元/ GJ。 (c)2020 elestvier有限公司保留所有权利。

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