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Stirred tank simulation using Partially‑Averaged Navier‑Stokes k_u−ε_u turbulence model

机译:使用部分平均的Navier-Stokes K_U-ε_U湍流模型搅拌罐模拟

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摘要

In the present study, simulation of a stirred tank using axial flow impeller has been studied numerically to see the behaviour of flow variables in the entire vessel. It is assumed that the flow is steady state, two dimensional, incompressible and axisymmetric. For simulation, Partially-Averaged Navier-Stokes (PANS) ku-Eu turbulence model has been taken into account. For discretization, control volume method along with upwind and power-law schemes have been taken. The solutions are obtained by using the SIMPLE algorithm. The boundary conditions for impeller are given by using the experimental data. The main objective is to investigate the influence of different filters width fk of the PANS ku-Eu model parameter on the characteristic flow variables. The predicted results of the PANS ku-Eu model for different fk have been compared with the experimental data at different axial levels of the stirred tank. It has been observed that the power-law scheme gives better agreement with the experimental data. Further, near the impeller region, PANS predicted results are better for smaller fk. Also, Reynolds-Averaged Navier-Stokes Shear Stress Transport (SST) k-omega turbulence model has been tested for comparative study.
机译:在本研究中,使用轴流叶轮的搅拌罐的模拟已经在数值上进行了数量,以便在整个容器中看到流量变量的行为。假设流量是稳态,二维,不可压缩和轴对称的。对于模拟,已考虑部分平均的Navier-Stokes(平移)Ku-eu湍流模型。为了离散化,已经采取了对控制体积方法以及逆风和幂律方案。通过使用简单的算法获得解决方案。通过使用实验数据给出叶轮的边界条件。主要目的是研究不同滤波器宽度FK在特征流量变量上的不同滤波器宽度FK的影响。与搅拌罐的不同轴向水平的实验数据进行了比较了不同FK的PANS Ku-Eu模型的预测结果。已经观察到,幂律方案与实验数据提供更好的一致性。此外,在叶轮区域附近,PAN预测结果对于较小的FK更好。此外,已经测试了对比较研究的Reynolds平均Navier-Stokes剪切应力传输(SST)K-Omega湍流模型。

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