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Performance investigation of a combined heat and power system with internal and external combustion engines

机译:内外燃机组合热电系统性能调查

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In this paper, a new model of a combined heat and power system with hybrid prime mover including an internal combustion engine and an external combustion engine (Stirling engine) at different rotational speeds of the internal combustion engine is investigated. The recommended system can be used in building applications. Therefore, an internal combustion engine is used as the main prime mover of the system and for optimal using of the heating value of fuel, dissipated heat from its exhaust gas is used as the heat source of Stirling engine. Also, for estimating the performances of internal combustion and Stirling engines, a mathematical model called zero-dimensional single-zone and a numerical model called non-ideal adiabatic are used, respectively. Also, the combined production system has been modeled from viewpoints of thermal efficiency, overall efficiency, primary energy consumption, carbon dioxide emission and fuel consumption costs at different rotational speeds of the internal combustion engine and analyzed based on internal combustion engine (solely) and based on two engines (hybrid prime mover). Moreover, this system has been compared with a conventional energy production system for the building. Furthermore, a payback period in various working conditions for the system is calculated. Modeling results showed that using the hybrid prime mover led to a considerable increase in power output, thermal efficiency, and primary energy saving. Also, by using the hybrid system, the carbon dioxide emission and payback period had a dramatically reduction. In addition, for the combined production system with the internal combustion engine at rotational speed of 3500 rpm and operation of 9 h per day, the payback period was 10.5 years and for hybrid prime mover at this operation condition, it reduced to 7.5 years.
机译:在本文中,研究了一种具有包括内燃机和外燃机的外燃机和外燃机(斯特林发动机)的混合主要动力系统的组合热量和电力系统的新模型。推荐的系统可用于构建应用程序。因此,内燃机用作系统的主要原动机,并且为了最佳使用燃料的加热值,将来自其废气的散热用作斯特林发动机的热源。而且,为了估计内燃机和斯特林发动机的性能,分别使用称为零维单区的数学模型和称为非理想绝热的数值模型。此外,组合的生产系统是从内燃机的不同转速的热效率,整体效率,初级能耗,二氧化碳排放和燃料消耗等的观点建模的,并基于内燃机(单独)和基于基于内燃机在两个发动机(混合Prime Mover)。此外,该系统与建筑物的传统能源生产系统进行了比较。此外,计算了系统的各种工作条件中的回收期。建模结果表明,使用混合动力推动器导致功率输出,热效率和初级节能的相当大增加。此外,通过使用杂交系统,二氧化碳排放和回收期具有显着减少。此外,对于带有内燃机的组合生产系统,旋转速度为3500rpm,每天运行9小时,回收期为10.5岁,对于这种运作条件的混合素换货,它减少到7.5年。

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