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Experimental analysis of micro-cogeneration units based on reciprocating internal combustion engine

机译:基于往复式内燃机的微型热电联产机组的实验分析

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The cogeneration, or the combined production of electric and/or mechanical and thermal energy, is a well-established technology now, which has important environmental benefits and has been noted by the European Community as one of the first elements to save primary energy, to avoid network losses and to reduce the greenhouse gas emissions. In particular, our interest will be focused on the micro-cogeneration, MCHP (electric power ≤ 15 kW), which represents a valid and interesting application of this technology which refers, above all, to residential and light commercial users [M. Dentice d'Accadia, M. Sasso, S. Sibilio, Cogeneration for energy saving in household applications, in: P. Bertoldi, A. Ricci, A. de Almeida (Eds.), Energy Efficiency in Household Appliances and Lighting, Springer, Berlin, 2001, pp. 210-221; Directive 2004/8/EC of the European Parliament and of the Council of the 11 February 2004 on the promotion of cogeneration based on the useful heat demand in the internal energy market and amending Directive 92/42/EEC, Official Journal of the European Union (2004)]. In particular, our work group started a R&D programme on micro-cogeneration in 1995: a laboratory, equipped with the most common appliances (washing-machine, dishwasher, storage water heater,...), has been built and some MCHP prototypes have been tested too. In this article, the results of an intense experimental activity on three different micro-cogenerators, one of them made in Japan and in a pre-selling phase, are reported. In a previous paper a detailed analysis of the test facility, with the description of the equipments and the data acquisition systems, can be found [M. Dentice d'Accadia, M. Sasso, S. Sibilio, R. Vanoli, Micro-combined heat and power in residential and light commercial applications, Applied Thermal Engineering 23 (2003) 1247-1259]. A typical 3-E (Energetic, Economic and Environmental) approach has been performed to compare the proposed energy system, MCHP, to the conventional one based on separate "production". In the energetic analysis the amount of primary energy savings provided by micro-cogeneration unit has been evaluated for different types of MCHP units and at various working conditions. Furthermore the evaluation of the equivalent CO_2 emissions of the compared systems, MCHP and conventional systems, allows to calculate the MCHP potentials to reduce greenhouse gas emissions. Finally the Simple Pay Back approach has been considered to define the economic feasibility of cogeneration in small size applications with the varying of some economic variables (first cost, gas price, operating hours per year ...).
机译:热电联产,或电能和/或机械能和热能的联合生产,现在是一项成熟的技术,它具有重要的环境效益,并已被欧洲共同体视为节约主要能源的第一批要素之一。避免网络损失并减少温室气体排放。特别地,我们的兴趣将集中在微型热电联产MCHP(电力≤15 kW)上,这代表了这项技术的有效和有趣的应用,尤其是指住宅和轻型商业用户[M. Dentice d'Accadia,M。Sasso和S. Sibilio,《热电联产用于家庭应用中的节能》,载于:P。Bertoldi,A。Ricci,A。de Almeida(编辑),《家用电器和照明设备的能源效率》,施普林格,柏林,2001年,第210-221页;欧洲议会和理事会于2004年2月11日发布的第2004/8 / EC号指令,该指令基于内部能源市场上的有用热需求促进热电联产,并修订了第92/42 / EEC号指令,《欧盟官方公报》 (2004)]。特别是,我们的工作小组于1995年开始了一项关于微型热电联产的研发计划:已建立了一个配备最常用电器(洗衣机,洗碗机,储水式热水器等)的实验室,并且有一些MCHP原型机也经过测试。在本文中,报告了对三种不同的微型热电发电机进行激烈实验的结果,其中一种是在日本制造的,并且处于预售阶段。在以前的论文中,可以找到对测试设备的详细分析,以及对设备和数据采集系统的描述。 Dentice d'Accadia,M。Sasso,S。Sibilio,R。Vanoli,民用和轻型商业应用中的微结合热电,应用热工程23(2003)1247-1259]。已经执行了一种典型的3-E(能源,经济和环境)方法,以将建议的能源系统MCHP与基于单独“生产”的常规能源系统进行比较。在能量分析中,针对不同类型的MCHP单元以及在各种工作条件下,对微型热电联产单元提供的一次能源节省量进行了评估。此外,对比较系统,MCHP和常规系统的等效CO_2排放进行评估,可以计算出减少温室气体排放的MCHP潜力。最后,人们考虑采用简单的回收方式来定义在小规模应用中热电联产的经济可行性,同时还要考虑一些经济变量(首次成本,天然气价格,每年的运行时间...)的变化。

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