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Energy assessment of PEMFC based MCCHP with absorption chiller for small scale French residential application

机译:带有吸收式制冷机的基于PEMFC的MCCHP的能量评估,用于小型法国住宅应用

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In this paper, a novel micro combined cooling, heating, and power (MCCHP) system based on Proton Exchange (PEM) fuel cell and single-effect lithium LiBr-H2O absorption machine, was designed and studied. PEMFC exhaust gas is used for heating the building and combustor exhaust gas energy is provided to absorption chiller for house cooling. A developed mathematical model is used to predict the MCCHP unit annual energy performance and saving. The study is focused on the MCCHP unit integrated on a single-family house located into eight different French climatic cities (Trappes, Rennes, Nantes, Strasbourg, Clermont-Ferrand, Bordeaux, Orange, and Marseille). Three operational strategies: following electric load (FEL), following thermal load (FTL) and following thermal and cold loads (FTCL) are investigated. The advantage of each strategy is analysed basing on different operational parameters such as electrical, thermal and total efficiencies of the combined PEMFC-absorption chiller, hydrogen consumption, and self-consumption ratios. The proposed MCCHP has been compared with the conventional separated energy systems using the fuel energy saving ratio as a performance index. The results show that the MCCHP unit saves energy during the whole year respecting the French climatic constraints and the house energy need. The best operational strategy is for MCCHP respecting electricity demand where the yearly average fuel energy saving ratio is about 35%. Furthermore, the analyses show that the maximum Fuel Energy Saving Ratio is about 35%, obtained for a single-family house located at Marseille, while the minimum Fuel Energy Saving Ratio, about 32%, is reached for a house situated at Rennes. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文设计和研究了一种基于质子交换(PEM)燃料电池和单效锂LiBr-H2O吸收机的新型微型热电联产系统(MCCHP)。 PEMFC废气用于加热建筑物,燃烧室的废气能量提供给吸收式制冷机以进行房屋冷却。已开发的数学模型用于预测MCCHP装置的年度能源性能和节能。该研究的重点是将MCCHP单元整合到位于八个法国气候城市(特拉普斯,雷恩,南特,斯特拉斯堡,克莱蒙费朗,波尔多,奥兰治和马赛)的单户住宅中。研究了三种操作策略:跟随电负载(FEL),跟随热负载(FTL)以及跟随热和冷负载(FTCL)。根据不同的运行参数(例如组合式PEMFC吸收式制冷机的电,热和总效率,氢气消耗和自耗率)分析每种策略的优势。拟议的MCCHP已与传统的分离式能源系统进行了比较,使用燃料节能率作为性能指标。结果表明,MCCHP装置在考虑法国气候限制和房屋能源需求的情况下,全年节约能源。 MCCHP的最佳操作策略是尊重电力需求,年平均燃料节能率约为35%。此外,分析表明,对于位于马赛的单户住宅,最大节油率约为35%,而对于位于雷恩的房屋,其最小节油率约为32%。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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