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Development of a diesel engine piston by incorporating heat-pipe technology: a FEM modeling of the a simulated piston crown

机译:采用热管技术开发柴油发动机活塞:模拟活塞冠的FEM建模

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The first part of this series of papers reports the development of a simulated piston crown with an annular reciprocating heat pipe and the investigation on the effect of heat-pipe cooling on the piston-crown temperature distribution. This paper presents the modeling of the simulated piston crown with the finite-element method and the analysis of its thermal performance. The heat-transfer coefficient with respect to the reciprocal environment of the experimental apparatus and the effective thermal conductance of the annular heat pipe are determined by correlating the modeling with the experimental measurements. The numerical modeling agrees well with the experimental results. The analyses indicate that the heat-pipe cooling technology can provide an effective means for piston temperature control.
机译:这一系列论文的第一部分报道了一种具有环形往复热管的模拟活塞冠的开发,以及对活塞 - 冠温度分布的热管冷却效果的研究。本文介绍了模拟活塞冠与有限元方法的建模及其热性能分析。通过将建模与实验测量的建模相关联来确定关于实验装置的往复环境的传热系数和环形热管的有效热传导。数值模型与实验结果一致。分析表明,热管冷却技术可以提供活塞温度控制的有效手段。

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