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Experimental validation of new approach for waste heat recovery from combustion engine for cooling and heating demands from combustion engine for maritime applications

机译:燃烧发动机燃烧发动机废热回收新方法的实验验证,用于冷却发动机燃烧发动机燃烧发动机

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摘要

Waste heat recovery is one of the crucial and fundamental issue of energy management related with energy efficiency improvement, fuel savings, and reduction of greenhouse gases emissions. The paper provides with the experimentation of the prototype heat recovery system dedicated to the small and mid-sized maritime combustion engines of the nominal load of 100e250 kW. The waste heat recovery system is covering the innovative low-pressure steam indirect heat transfer subsystem. The recovered heat is consumed by a heating system and a prototype heat driven ejector refrigeration cycle operating with environmentally safe refrigerant. It was demonstrated that the refrigeration system produces up to 30 kW of cold by consuming 75 kW of heat gathered from flue gases. This is the first prototype of the compact heat driven refrigeration system for marine applications. The waste heat recovery system additionally provides with approximately 60 kW heat recovered from water jacked cooling of the engine block which is used for heating capacity dedicated for tap water and space heating purposes. This covers almost all small and mid-sized vessels needs for thermal energy. The prototype design has been approved by two independent maritime classification societies.(c) 2020 Elsevier Ltd. All rights reserved.
机译:废热回收是能源管理的关键和基本问题与能效改善,省油节省和温室气体排放的减少相关。本文提供了专用于额定载荷100E250 kW的小型和中型海上燃烧发动机的原型热回收系统的实验。废热回收系统覆盖着创新的低压蒸汽间接传热子系统。回收的热量由加热系统和原型热驱动的喷射器制冷循环消耗,与环保制冷剂一起操作。结果证明,通过消耗从烟道气收集的75千瓦,制冷系统可产生高达30千瓦的寒冷。这是用于海洋应用的紧凑型热驱动制冷系统的第一个原型。废热回收系统另外提供从发动机块的水千斤顶冷却中恢复的大约60kW热量,该发动机块用于加热容量专用于自来水和空间加热目的。这涵盖了几乎所有小型和中型的船舶都需要热能。原型设计已被两个独立的海上分类社会批准。(c)2020 Elsevier Ltd.保留所有权利。

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