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首页> 外文期刊>International journal of engine research >Heat transfer coefficient on the combustion chamber wall surfaces in a naturally aspirated direct-injection diesel engine
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Heat transfer coefficient on the combustion chamber wall surfaces in a naturally aspirated direct-injection diesel engine

机译:自然吸气直喷柴油发动机燃烧室壁表面的传热系数

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摘要

Thin-film thermocouples were used to measure the instantaneous temperature at 100 points on all the combustion chamber wall surfaces in a naturally aspirated direct-injection diesel engine. Instantaneous heat flux at each measured point was also obtained through heat transfer analysis with the measured instantaneous wall surface temperature applied as a boundary condition. In addition, the instantaneous mass-averaged gas temperature in the combustion chamber was calculated through the equation of state of an ideal gas. As a result, the local and overall heat transfer coefficients were evaluated using the corresponding wall surface temperatures and heat fluxes. The overall heat transfer coefficients thus obtained were compared with those calculated with Eichelberg's and Woschni's empirical equations for five ignition timings and three engine speeds. As a result, it was revealed that an overall average heat transfer coefficient obtained through the authors' experiments has characteristics different from those of the heat transfer coefficients calculated from the empirical equations proposed by Eichelberg and Woschni.
机译:薄膜热电偶用于测量自然吸气直喷式柴油机燃烧室所有壁面上100点的瞬时温度。还通过传热分析获得每个测量点的瞬时热通量,并将所测量的瞬时壁表面温度作为边界条件。另外,通过理想气体的状态方程计算出燃烧室内的瞬时质量平均气体温度。结果,使用相应的壁表面温度和热通量评估了局部和整体传热系数。将由此获得的总传热系数与用艾歇尔伯格和沃施尼的经验方程式计算出的五个点火正时和三个发动机转速的传热系数进行了比较。结果表明,通过作者的实验获得的总体平均传热系数具有与根据Eichelberg和Woschni提出的经验方程式计算出的传热系数不同的特征。

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