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A comparative thermoeconomic cost accounting analysis and evaluation of biogas engine-powered cogeneration

机译:沼气发动机热电联产的热经济成本核算比较与评估

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This study presents an analysis of a biogas engine-powered cogeneration system using four different thermoeconomic methods. The most important parameter is the thermoeconomic cost of work produced by the gas engine for each method. The aim is to compare the results obtained from each of those methods. The first method is the exergetic cost theory, which introduced the exergetic cost concept to the thermoeconomic field for the first time. An incidence matrix is defined to show the interaction of flows and components within the system. Exergetic cost theory defines the main rules and delivers a result of 110.065$/h for the work produced by the gas engine. A second method, modified productive structure analysis, is applied to the system and cost balance equations are formed for each component. Exergy destruction is clearly defined and tabulated. At the end of the analysis, the cost of gas engine work was found to be 85536$/h. A third new method described in published literature, Wonergy, is used to determine both the cost of work and the heat utilized in the cogeneration system. Wonergy gives the same thermoeconomic cost for the components which help to produce work. The smallest value obtained was 72.5$/h. The fourth method, SPECO (specific exergy cost), was the final analytical method used on the system. It defines fuel and product rules to obtain auxiliary equations. The thermoeconomic cost of work produced from the gas engine was determined to be 141$/h which was the highest value obtained in comparison to the others. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究提出了使用四种不同的热经济方法对沼气发动机供热的热电联产系统进行的分析。最重要的参数是每种方法由燃气发动机产生的热经济工作成本。目的是比较从每种方法获得的结果。第一种方法是能动成本理论,它将能动成本概念首次引入热经济领域。定义了一个入射矩阵,以显示系统中流和组件之间的相互作用。高能成本理论定义了主要规则,并为燃气发动机产生的工作提供了110.065 $ / h的结果。第二种方法是改进的生产结构分析,该方法应用于系统,并为每个组件形成成本平衡方程。火用破坏被明确定义并制成表格。分析结束时,发现汽油发动机的工作成本为85536 $ / h。已发表的文献中描述的第三种新方法,Wonergy,用于确定热电联产系统的工作成本和热量。 Wonergy为有助于生产的部件提供了相同的热经济成本。获得的最小值为72.5 $ / h。第四种方法,SPECO(比火用成本)是系统上使用的最终分析方法。它定义了燃料和产品规则以获得辅助方程式。燃气发动机产生的热经济性成本确定为141 $ / h,这是与其他方法相比最高的值。 (C)2018 Elsevier Ltd.保留所有权利。

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