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Influence of heat loss on the performance of an air-standard Atkinson cycle

机译:热量损失对空气标准阿特金森循环性能的影响

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This study is aimed at investigating the effects of heat loss, as characterized by a percentage of fuel's energy, friction and variable specific heats of the working fluid, on the performance of an air-standard Atkinson cycle under the restriction of the maximum cycle-temperature. A more realistic and precise relationship between the fuel's chemical-energy and the heat leakage is derived through the resulting temperature. The variations in power output and thermal efBciency with compression ratio, and the relations between the power output and the thermal efficiency of the cycle are presented. The results show that the power output as well as the efficiency, for which the maximum power-output occurs, will rise with the increase of maximum cycle-temperature. The temperature-dependent specific heats of the working fluid have a significant influence on the performance. The power output and the working range of the cycle increase while the efficiency decreases with the rise of specific heats of working fluid. The friction loss has a negative effect on the performance. Therefore, the power output and efficiency of the Atkinson cycle decrease with increasing friction loss. It is noteworthy that the results obtained in the present study are of significance for providing guidance with respect to the performance evaluation and improvement of practical Atkinson-cycle engines.
机译:这项研究旨在调查在最大循环温度限制下,以燃料能量,摩擦和工作流体的可变比热百分比表示的热损失对空气标准阿特金森循环性能的影响。 。燃料的化学能与热泄漏之间的更现实,更精确的关系是通过所得温度得出的。给出了功率输出和热效率随压缩比的变化,以及功率输出与循环热效率之间的关系。结果表明,随着最大循环温度的升高,发生最大功率输出的功率输出和效率将增加。工作流体的温度相关比热对性能有重大影响。随着工作流体比热的增加,功率输出和循环的工作范围增大,而效率下降。摩擦损失对性能有负面影响。因此,阿特金森循环的功率输出和效率随着摩擦损耗的增加而降低。值得注意的是,在本研究中获得的结果对于为实用的阿特金森循环发动机的性能评估和改进提供指导具有重要意义。

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