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Comparison of sewage treatment mixer in three pool face boundary conditions

机译:三个池面边界条件下污水处理混合器的比较

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The method for setting the boundary condition of the pool surface was studied. Using the FLUENT 6.3 CFD software, the RNG k-e turbulence model and SI MPLE algorithm, the sewage treatment pool where a submersible mixer with two leaves was numerically simulated by describing the surface as wall, VOF model and rigid-lid assumption respectively. Meanwhile, the velocity distribution in the pool was analyzed. The results showed that: the contribution of the three different treatments to the flow in the pool are small except the area near the pool surface. In the first case( describe the surface as wall), pool surface fluid velocity is zero, which is inconsistent with the actual situation obviously. In the other two cases (describe the surface as VOF model and rigid-lid assumption), the pool surface fluid velocity has the same velocity and is not zero, which is consistent with the actual situation. In the case of rigid-lid assumption, convergence was reached easily, and it is undemanding for the computer configuration, so it (rigid-lid assumption) is the best boundary conditions setting method for the surface and provides guidance for the mixer numerical simulation.
机译:研究了用于设定池表面的边界条件的方法。使用FLUENT 6.3 CFD软件,RNG K-E湍流模型和SI MPLE算法,通过将表面为墙壁,VOF模型和刚性盖的假设分别描述了具有两片叶片的潜水混合器的污水处理池。同时,分析了池中的速度分布。结果表明:除了泳池表面附近的区域之外,三种不同治疗对池中的流动的贡献很小。在第一种情况下(描述墙壁的表面),池表面流体速度为零,这与实际情况显着不一致。在另外两种情况下(描述了表面作为VOF模型和刚性盖子的假设),池表面流体速度具有相同的速度,并且不是零,这与实际情况一致。在刚性盖子的假设的情况下,容易达到收敛,并且对计算机配置不明显,因此它(刚性假设)是表面的最佳边界条件设置方法,为混频器数值模拟提供指导。

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