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DIESEL ENGINE HEAT PUMP PERFORMANCE ANALYSIS FOR A DOMESTIC RETROFIT APPLICATION

机译:柴油发动机热泵性能分析为国内改造应用

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An engine driven heat pump (ENHP) uses an engine rather than electric motor and heat is recovered from engine coolant and exhaust gas. ENHP arrangement could have great potential where gas/electricity network are weak or not in existing. The aim of this work is to find the suitability of Diesel engine heat pump (DEHP) for domestic application comparing with the conventional technologies such as gas/oil boiler and electric heat pump (EHP). DEHP system was tested to provide high flow temperature as a retrofit technology to replace existing gas boiler at four-evaporator water inlet temperature and three engine speeds. Primary energy ratio (PER) and CO_2 saving potential have been compared. Test results showed that DEHP system has 39-65% higher heat output and 26-62% higher PER compared to EHP. Heat recovery share in total heat output varies from 28-39%. DEHP system annual performance compared with conventional system which showed that DEHP system has potential of 35-65% primary energy savings, 23-42% CO_2 emission saving and 26-42% annual fuel-cost savings compared to oil boiler with possible use of bio fuel with high retrofit potential in the UK.
机译:发动机驱动的热泵(ENHP)使用发动机而不是电动机,并从发动机冷却剂和废气中回收热量。 ENHP布置可能具有很大的潜力,其中天然气/电网弱或不存在。这项工作的目的是找到与常规技术相比,柴油发动机热泵(DEHP)的适用性与燃气/锅炉和电热泵(EHP)等传统技术相比。检测DEHP系统以提供高流量温度作为改造技术,以在四蒸发器进水温度下更换现有的燃气锅炉和三个发动机速度。比较了初级能量比(每个)和CO_2节省潜力。试验结果表明,与EHP相比,DEHP系统具有39-65%的热量输出和26-62%的更高。热量输出中的热量恢复份额因28-39%而异。 DEHP系统年度表现与传统系统相比,表明DEHP系统的潜力储蓄潜力为35-65%,23-42%的CO_2排放量和26-42%的年度燃料成本节省与可能使用生物的石油锅炉相比燃料在英国具有高改装潜力。

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