首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Computational fluid dynamics assessment of subcooled flow boiling in internal-combustion engine-like conditions at low flow velocities with a volume-of-fluid model and a two-fluid model
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Computational fluid dynamics assessment of subcooled flow boiling in internal-combustion engine-like conditions at low flow velocities with a volume-of-fluid model and a two-fluid model

机译:流体体积模型和二流体模型在低流速下类似内燃机条件下过冷沸腾的计算流体动力学评估

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摘要

The use of subcooled flow boiling is a convenient option for the thermal management of downsized engines, but proper control of the phenomenon requires the accurate prediction of heat transfer at the coolant side, for which the use of computational fluid dynamics is a suitable alternative. While in most of the applications to engine cooling a single-fluid equivalent method is used, in this paper the performance of a two-fluid method is evaluated in engine-like conditions with special interest in the low-velocity range. The results indicate that the description of the process at low velocities provided by the two-fluid method is better than that given by a single-fluid model, while model calibration is simpler and more robust and the computational cost is substantially reduced.
机译:对于小型发动机的热管理,使用过冷流沸腾是一种方便的选择,但是对现象的正确控制需要在冷却剂侧准确预测热传递,为此,使用计算流体力学是一种合适的选择。尽管在大多数发动机冷却应用中使用的是单流体等效方法,但在本文中,在低转速范围内特别关注的类似发动机的条件下,对双流体方法的性能进行了评估。结果表明,由双流体方法提供的低速过程描​​述比单流体模型更好,而模型校准更简单,更可靠,并且计算成本大大降低。

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