• In Chapter 2, we propose a finite-time thermodynamics model for a Diesel heat engine cycle.

    第二章建立狄塞尔热机循环有限时间热力学模型

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  • In order to approach the carnot efficiency the processes involved in the heat engine cycle must be reversible and involve no change in entropy.

    为了接近效率,所涉及过程热机循环必须可逆涉及没有改变熵。

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  • Two internal irreversibility parameters, the heat engine cycle and the refrigerator cycle were introduced to characterize the irreversibility inside the cycle.

    引入两个可逆性参数分别用于描述热机循环内不可逆性制冷循环的内不可逆性。

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  • Based on the analysis of the real engine's working process, a new model of irreversible thermal cycle for heat engine is proposed by using the finite time thermodynamics.

    分析实际发动机工作过程基础利用有限时间热力学理论方法,建立了一种新的不可逆热机热力循环模型

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  • On the basis of the finite time thermodynamics, the change of entropy due to the external irreversibility in engine heat cycle process was discussed.

    应用有限时间热力学理论研究发动机热力循环过程由于不可逆性导致变化

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  • There is no need to "heat cycle" a new engine. The term "heat cycle" comes from the idea that the new engine components are being "heat treated" as the engine is run.

    必要循环一台新的发动机,“热循环”这个是从发动机各个组件在发动机运行时热处理”来的。

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  • The heat transfer characteristics of the detonation chambers outer and inner wall were analyzed when the pulse detonation engine model was operated in the multi-cycle mode.

    分析了两相多循环脉冲发动机工作过程爆震室内、特性,建立爆震壁温分布计算模型

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  • A general cycle model of a solar engine is set up. The influence of finite-rate heat transfer and internal irreversibility on the cyclic performance of the system is searched.

    本文建立太阳能热机系统一般循环模型,探讨传热不可逆性因素循环性能影响

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  • A general cycle model of a solar engine is set up. The influence of finite-rate heat transfer and internal irreversibility on the cyclic performance of the system is searched.

    本文建立太阳能热机系统一般循环模型,探讨传热不可逆性因素循环性能影响

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