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On the applications of low-Reynolds cubic k-ε turbulence models in 3D simulations of ICE intake flows

机译:低雷诺立方k-ε湍流模型在冰摄入流动3D模拟中的应用

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The evaluation of the steady-flow discharge coefficient of ICE port assemble is known to be very sensitive to the capability of the turbulence sub-models in capturing the boundary layer dynamics. Despite the fact that the intrinsically unsteady phenomena related to flow separation claim for LES approach, the present paper aims to demonstrate that RANS simulation can provide reliable design-oriented results by using low-Reynolds cubic k-ε turbulence models. Different engine intake port assemblies and pressure drops have been simulated by using the CFD STAR-CD code and numerical results have been compared versus experiments in terms of both global parameters, i.e., the discharge coefficient, and local parameters, by means of static pressure measurements along the intake port just upstream of the valve seat. Computations have been performed by comparing two turbulence models: low-Reynolds cubic k-ε and high-Reynolds cubic k-ε.
机译:已知对冰端口组装稳态放电系数的评估对捕获边界层动态的湍流子模型的能力非常敏感。尽管有关与流动分离索赔的本质上不稳定的现象,但本文旨在证明Rans仿真可以通过使用低雷诺立方K-ε湍流模型提供可靠的设计结果。通过使用CFD Star-CD代码模拟了不同的发动机进气口组件和压降,并且通过静压测量,通过全局参数,即放电系数和局部参数而比较了数值结果与实验相比沿着进气口刚刚在阀座上游。通过比较两种湍流模型来执行计算:低雷诺立方K-ε和高雷诺立方k-ε。

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