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Single Cylinder Internal Combustion Engine Fuelled with H2NG Operating as Micro-CHP for Residential Use: Preliminary Experimental Analysis on Energy Performances and Numerical Simulations for LCOE Assessment

机译:家用微型CHP的H2NG燃料单缸内燃机:能源性能的初步实验分析和用于LCOE评估的数值模拟

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摘要

The paper presents data resulting by the preliminary experimental campaign performed on a micro CHP (combined heat and power) pre-commercial version (5 kWel) designed for dwellings. The engine employs the lubricant oil as the jacket coolant to simplify the heat recovery architecture and it was equipped by a condensing heat exchanger as well. The tests have been carried out at rated and partial load up to 2.9 kWel (59% of rated load) in condensing mode, fuelling the NG engine with hydrogen percentages equal to 0% vol. and 15% vol. In order to evaluate the CHP energy performance, the analysis was conducted for 160 h, using an alkaline electrolyser for hydrogen production, a static heat meter and two mass flow meters for both hydrogen and NG. The aim of this paper is to illustrate how the use of the hydrogen enrichment in a micro CHP plant, based on ICE technology, represents a foreseeable bridge solution to the forthcoming SOFC deployment.
机译:本文介绍了在针对住宅设计的微型CHP(热电联产)预商用版本(5 kWel)上进行的初步实验得出的数据。该发动机采用润滑油作为夹套冷却剂,以简化热量回收架构,并且还配备了冷凝式热交换器。该测试已在冷凝模式下以高达2.9 kWel(额定负载的59%)的额定和部分负载进行,从而为NG发动机提供了等于0%vol的氢气百分比。和15%vol。为了评估CHP的能量性能,分析进行了160小时,使用了用于生产氢气的碱性电解槽,一个静态热量表以及两个用于氢气和NG的质量流量计。本文的目的是说明基于ICE技术的微型热电联产厂中富氢的使用如何为即将到来的SOFC部署提供可预见的桥梁解决方案。

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