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Developing of a new comprehensive spark ignition engines code for heat loss analysis within combustion chamber walls

机译:制定新的综合性火花点火发动机法规,以分析燃烧室壁内的热损失

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The objective of this work is to develop the existing a zero-dimensional model named ODES to provide detailed insights into the internal process of the modern high speed spark ignition engines. Therefore, it has been concentrated on the development of new sub models for incorporation in an extended form of ODES, as follows: - The existing semi-empirical combustion model has been replaced by a new comprehensive model, which is based on the turbulent flame speed in the combustion chamber. - The existing three wall heat transfer model has been replaced by a new one in which, the combustion chamber is divided in to three zones including cylinder head, cylinder wall, and piston head. The steady-state heat transfer equation is solved through finite difference method with replaced boundary and initial conditions. The results gave the temperature distribution of combustion chamber walls. The rate of heat losses from combustion chamber to the coolant is calculated by using the mean temperature of each part. The code has been extensively validated with respect to performance and heat transfer against experimental results obtained on XU7JP spark ignition engine with two kinds of fuel, gasoline and compressed natural gas and gave good agreement with available experimental.
机译:这项工作的目的是开发现有的名为ODES的零维模型,以提供对现代高速火花点火发动机内部过程的详细了解。因此,它专注于开发新的子模型以将其以ODES的扩展形式并入,如下:-现有的半经验燃烧模型已被新的基于湍流火焰速度的综合模型所取代在燃烧室中-现有的三壁传热模型已被新的模型取代,在该模型中,燃烧室分为三个区域,包括气缸盖,气缸壁和活塞盖。通过边界条件和初始条件替换的有限差分法求解稳态传热方程。结果给出了燃烧室壁的温度分布。从燃烧室到冷却剂的热损失率是通过使用每个零件的平均温度来计算的。该代码已经在XU7JP火花点火发动机上使用两种燃料(汽油和压缩天然气)获得的实验结果进行了性能和热传递方面的广泛验证,并且与现有实验具有良好的一致性。

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