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Heat transfer effects on the performance of an air standard Dual cycle

机译:传热对空气标准双循环性能的影响

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There are heat losses during the cycle of a real engine that are neglected in ideal air standard analysis. In this paper, the effects of heat transfer on the net work output and the indicated thermal efficiency of an air standard Dual cycle are analyzed. Heat transfer from the unburned mixture to the cylinder walls has a negligible effect on the performance for the compression process. Additionally, the heat transfer rates to the cylinder walls during combustion are the highest and extremely important. Therefore, we assume that the compression and power processes proceed instantaneously so that they are reversible adiabatics, and the heat losses during the heat rejection process can be neglected. The heat loss through the cylinder wall is assumed to occur only during combustion and is further assumed to be proportional to the average temperature of both the working fluid and the cylinder wall. The results show that the net work output versus efficiency characteristics and the maximum net work output and the corresponding efficiency bounds are strongly influenced by the magnitude of the heat transfer. Higher heat transfer to the combustion chamber walls lowers the peak temperature and pressure and reduces the work per cycle and the efficiency. The effects of other parameters, in conjunction with the heat transfer, including combustion constants, cut-off ratio and intake air temperature, are also reported. The results are of importance to provide good guidance for the performance evaluation and improvement of practical Diesel engines.
机译:在理想的空气标准分析中,可以忽略实际发动机循环期间的热量损失。在本文中,分析了传热对净功输出的影响以及空气标准双循环的指示热效率。从未燃烧混合物到气缸壁的热传递对压缩过程的性能影响可忽略不计。另外,在燃烧期间到气缸壁的传热速率是最高的并且非常重要。因此,我们假设压缩和功率过程是瞬时进行的,因此它们是可逆绝热的,并且可以忽略排热过程中的热损失。通过汽缸壁的热损失被假定为仅在燃烧期间发生,并且进一步被假定为与工作流体和汽缸壁的平均温度成比例。结果表明,净功输出与效率的关系以及最大净功输出和相应的效率界限受传热幅度的强烈影响。更高的热量传递到燃烧室壁降低了峰值温度和压力,并降低了每个循环的功和效率。还报告了与传热相关的其他参数的影响,包括燃烧常数,截流比和进气温度。这些结果对于为实用柴油发动机的性能评估和改进提供良好的指导非常重要。

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