An irreversible cycle model of the Diesel heat engine is established in which the temperature dependent heat capacities of the working fluid, the irreversibilities resulting from non-isentropic compression and expansion processes and heat leak losses through the cylinder wall are taken into account. The adiabatic equation of ideal gases with temperature dependent heat capacity is strictly deduced without using the additional approximation condition in the relevant literature and is used to analyze the performance of the Diesel heat engine. Expressions for the work output and efficiency of the cycle are derived by introducing the pressure ratio and the compression and expansion efficiencies. The performance characteristic curves of the Diesel heat engine are presented for a set of given parameters. The optimum criteria of some important parameters such as the work output, efficiency, pressure ratio and temperatures of the working fluid are obtained. Moreover, the influence of the compression and expansion efficiencies, variable heat capacities, heat leak and other parameters on the performance of the cycle is discussed in detail. The results obtained may provide a theoretical basis for both optimal design and operation of real Diesel heat engines. (c) 2007 Published by Elsevier Ltd.
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School of Mechanical and Electronic Eng., Sanming University, Sanming 365004, China
Sanming Engineering Research Center of Mechanical CAD, Sanming 365000, ChinaSchool of Mechanical and Electronic Eng., Sanming University, Sanming 365004, China
Chen, Liwei
Zhang, Houcheng
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Department of Microelectronic Science and Engineering, Ningbo University, Ningbo 315211, Zhejiang Province, ChinaSchool of Mechanical and Electronic Eng., Sanming University, Sanming 365004, China
Zhang, Houcheng
Gao, Songhua
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School of Mechanical and Electronic Eng., Sanming University, Sanming 365004, ChinaSchool of Mechanical and Electronic Eng., Sanming University, Sanming 365004, China
Gao, Songhua
Yan, Huixian
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School of Mechanical and Electronic Eng., Sanming University, Sanming 365004, ChinaSchool of Mechanical and Electronic Eng., Sanming University, Sanming 365004, China