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Application of two buoyancy-modified k-ε turbulence models to different types of buoyant plumes

机译:两种浮力修正型k-ε湍流模型在不同类型浮力羽流中的应用

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The accuracy of results of computational fluid dynamics simulations of fires strongly depends on the turbulence model applied when the Reynolds-averaged Navier-Stokes approach is used. In particular, the effect of buoyancy on turbulence is important for fire-driven flows. In this work, the standard and a realizable k-ε model are addressed. Both the simple and the generalized gradient diffusion hypothesis are applied for the calculation of the buoyancy production of turbulent kinetic energy. Simulation results are presented for the axisymmetric free buoyant plume and the plane buoyant wall plume. The buoyancy modification based on the simple gradient diffusion hypothesis has a negligible influence on the results for both test cases. The realizable k-ε model with modifications based on the generalized gradient diffusion hypothesis performs well for the test cases considered.
机译:火灾的计算流体动力学模拟结果的准确性在很大程度上取决于使用雷诺平均Navier-Stokes方法时所应用的湍流模型。特别是,浮力对湍流的影响对于以火为动力的流动非常重要。在这项工作中,解决了标准和可实现的k-ε模型。简单梯度分布假设和广义梯度扩散假设都可用于计算湍动能的浮力产生。给出了轴对称自由浮力羽和平面浮力壁羽的仿真结果。基于简单梯度扩散假设的浮力修改对两个测试用例的结果的影响都可以忽略不计。基于广义梯度扩散假设进行修改的可实现k-ε模型在所考虑的测试案例中表现良好。

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