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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Investigation of a wet ethanol operated HCCI engine based on first and second law analyses
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Investigation of a wet ethanol operated HCCI engine based on first and second law analyses

机译:基于第一定律和第二定律分析的湿式乙醇操作HCCI发动机的研究

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摘要

In this paper, a conceptual wet ethanol operated homogeneous charge compression ignition (HCCI) engine is proposed to shift the energy balance in favor of ethanol. The investigated option, HCCI engine is a relatively new type of engine that has some fundamental differences with respect to other prime movers. Combined first and second law of thermodynamic approach is applied for a HCCI engine operating on wet ethanol and computational analysis is performed to investigate the effects of turbocharger compressor ratio, ambient temperature, and compressor adiabatic efficiency on first law efficiency, second law efficiency, and exergy destruction in each component. First law and second law efficiencies are found to be an increasing function of the turbocharger pressure ratio, while they are found to be a decreasing function of the ambient temperature. The effect of turbocharger pressure ratio on exergy destruction is found to be more significant than compressor efficiency and ambient temperature. Exergy analysis indicates that maximum exergy is destroyed in HCCI engine which represents about 90.09% of the total exergy destruction in the overall system. Around 4.39% exergy is destroyed by the process of heat transfer in fuel vaporizer and heat exchanger. Catalytic converter contributes about 4.08% of the total exergy destruction. This will provide some original information on the role of operating variables and will be quite useful in obtaining the optimum design of ethanol fuelled HCCI engines.
机译:在本文中,提出了一种概念性的湿式乙醇操作均质充量压缩点火(HCCI)发动机,以改变能量平衡,有利于乙醇。 HCCI发动机是经过研究的选件,是一种相对新型的发动机,相对于其他原动机有一些根本差异。将热力学方法的第一定律和第二定律结合用于在湿乙醇上运行的HCCI发动机,并进行了计算分析,以研究涡轮增压器压缩机比,环境温度和压缩机绝热效率对第一定律效率,第二定律效率和火用的影响破坏每个组件。发现第一定律和第二定律效率是涡轮增压器压力比的增加函数,而发现它们是环境温度的下降函数。发现涡轮增压器压力比对火用破坏的影响比压缩机效率和环境温度更为重要。火用分析表明,HCCI发动机的最大火用被破坏,约占整个系统总火用破坏的90.09%。燃料蒸发器和热交换器中的传热过程破坏了约4.39%的火用。催化转化器占总能干破坏的约4.08%。这将提供一些有关工作变量作用的原始信息,并且在获得以乙醇为燃料的HCCI发动机的最佳设计方面将非常有用。

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