首页> 外文会议>2011 International Conference on Consumer Electronics, Communications and Networks >The effects of temperature-dependent specific heats of the working fluid on the performance of a Dual cycle with heat loss and friction
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The effects of temperature-dependent specific heats of the working fluid on the performance of a Dual cycle with heat loss and friction

机译:工作流体的温度相关比热对具有热损失和摩擦的双循环性能的影响

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The purpose of this study is to analyze the effects of variable specific heats of working fluid on the performance of a Dual engine with considerations of heat transfer and friction by using finite-time thermodynamics. The results show that the power output as well as the efficiency where maximum power output occurs will increase with increasing the amount of heat added to the engine due to combustion or with decreasing the quantity of heat loss through the cylinder wall. The temperature-dependent specific heats of working fluid have a significant influence on the performance. The power output and the working range of the cycle increase with the increase of specific heats of working fluid, while, the efficiency decreases with the increase of specific heats of working fluid. Furthermore, the power output and efficiency of the cycle decrease with increasing the parameter b related to the friction loss. It is noteworthy that the effects of heat transfer with considerations of variable specific heats of working fluid and friction loss on the performance of a Dual engine are significant and should be considered in practice cycle analysis.
机译:这项研究的目的是通过使用有限时间热力学来分析工作流体的可变比热对双发动机性能的影响,同时考虑传热和摩擦。结果表明,功率输出以及发生最大功率输出时的效率将随着由于燃烧而增加到发动机的热量增加或通过汽缸壁的热量损失减少而增加。工作流体的温度相关比热对性能有重要影响。循环的功率输出和工作范围随着工作流体比热的增加而增加,而效率随着工作流体比热的增加而降低。此外,随着与摩擦损耗有关的参数b的增加,功率输出和循环效率降低。值得注意的是,考虑到工作流体的可变比热和摩擦损失,传热对双发动机性能的影响是显着的,应在实践循环分析中予以考虑。

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