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Thermodynamic analysis of a novel dual-loop organic Rankine cycle for engine waste heat and LNG cold

机译:新型双回路有机朗肯循环对发动机余热和LNG冷态的热力学分析

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摘要

The marine sector produces a large portion of total air pollution, so the emissions of the engines used must be improved. This can be achieved using a new eco-friendly engine and waste-heat recovery system. A dual-fuel (DF) engine has been introduced for LNG carriers that is eco-friendly and has high thermal efficiency since it uses natural gas as fuel. The thermal efficiency could be further improved with the organic Rankine cycle (ORC). A novel dual-loop ORC system was designed for DF engines. The upper ORC loop recovers waste heat from the exhaust gas, and the bottom ORC loop recovers waste heat from the jacket cooling water and LNG cold. Both ORC loops were optimized to produce the maximum net work output. The optimum simple dual-loop ORC with n-pentane and R125 as working fluids produces an additional power output of 729.1 kW, which is 4.15% of the original engine output. Further system improvement studies were conducted using a recuperator and preheater, and the feasibility of using boil off gas as a heat sink was analyzed. Optimization of the system configuration revealed that the preheater and recuperator with n-pentane and R125 as working fluids increase the maximum net work output by 906.4 kW, which is 5.17% of the original engine output. (C) 2016 Elsevier Ltd. All rights reserved.
机译:海洋部门产生了总空气污染的很大一部分,因此必须改善所用发动机的排放。这可以通过使用新型的环保型发动机和废热回收系统来实现。已经引入了用于LNG船的双燃料(DF)发动机,该发动机既环保又具有高热效率,因为它使用天然气作为燃料。通过有机朗肯循环(ORC)可以进一步提高热效率。一种新颖的双回路ORC系统是为DF发动机设计的。上层ORC回路从废气中回收废热,而下层ORC回路从夹套冷却水和LNG冷源中回收废热。两个ORC循环都经过优化,以产生最大的网络输出。具有正戊烷和R125作为工作流体的最佳简单双回路ORC可产生729.1 kW的附加功率输出,占原始发动机输出的4.15%。使用换热器和预热器进行了进一步的系统改进研究,并分析了使用蒸发气体作为散热器的可行性。系统配置的优化表明,以正戊烷和R125作为工作流体的预热器和同流换热器使最大净功输出增加了906.4 kW,是原始发动机输出的5.17%。 (C)2016 Elsevier Ltd.保留所有权利。

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