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首页> 外文期刊>International Journal of Thermal Sciences >Energy, exergy and cost analysis of a micro-cogeneration system based on an Ericsson engine
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Energy, exergy and cost analysis of a micro-cogeneration system based on an Ericsson engine

机译:基于爱立信发动机的微型热电联产系统的能源,火用和成本分析

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摘要

Hot air engines (Stirling and Ericsson engines) are well suited for micro-cogeneration applications because they are noiseless, and they require very low maintenance. Ericsson engines (i.e. Joule cycle reciprocating engines with external heat supply) are especially interesting because their design is less constrained than Stirling engines, leading to potentially cheaper and energetically better systems. We study the coupling of such an Ericsson engine with a system of natural gas combustion. In order to design this plant, we carry out classic energy, exergy and exergo-economic analyses. This study does not deal with a purely theoretical thermodynamic cycle. Instead, it is led with a special attempt to describe as accurately as possible what could be the design and the performance of a real engine. It allows us to balance energetic performance and heat exchanger sizes, to plot the exergy Grassmann diagram, and to evaluate the cost of the thermal and electric energy production. These simple analyses confirm the interest of such systems for micro-cogeneration purposes. The main result of this study is thus to draw the attention on Ericsson engines, unfortunately unfairly fallen into oblivion.
机译:热空气发动机(斯特林和爱立信发动机)无噪音,并且维护成本非常低,因此非常适合微型热电联产应用。爱立信发动机(即具有外部供热的焦耳循环往复式发动机)特别有趣,因为它们的设计比斯特林发动机的约束更少,从而可能会带来更便宜,更节能的系统。我们研究了这种爱立信发动机与天然气燃烧系统的耦合。为了设计该工厂,我们进行了经典的能源,火用和能效经济分析。该研究不涉及纯粹的理论热力学循环。取而代之的是,它进行了一次特殊的尝试,即尽可能准确地描述实际引擎的设计和性能。它使我们能够平衡能量性能和热交换器的尺寸,绘制出能级格拉斯曼图,并评估热能和电能的生产成本。这些简单的分析证实了这种系统用于微型热电联产的兴趣。因此,这项研究的主要结果是引起人们对爱立信发动机的关注,但不幸的是,爱立信发动机被遗忘了。

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