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Numerical Simulation and Structural Optimization of the Inclined Oil/Water Separator

机译:斜油水分离器的数值模拟与结构优化

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摘要

Improving the separation efficiency of the inclined oil/water separator, a new type of gravity separation equipment, is of great importance. In order to obtain a comprehensive understanding of the internal flow field of the separation process of oil and water within this separator, a numerical simulation based on Euler multiphase flow analysis and the realizable k-ε two equation turbulence model was executed using Fluent software. The optimal value ranges of the separator’s various structural parameters used in the numerical simulation were selected through orthogonal array experiments. A field experiment on the separator was conducted with optimized structural parameters in order to validate the reliability of the numerical simulation results. The research results indicated that the horizontal position of the dispenser, the hole number, and the diameter had significant effects on the oil/water separation efficiency, and that the longitudinal position of the dispenser and the position of the weir plate had insignificant effects on the oil/water separation efficiency. The optimal structural parameters obtained through the orthogonal array experiments resulted in an oil/water separation efficiency of up to 95%, which was 4.996% greater than that realized by the original structural parameters.
机译:新型的重力分离设备,倾斜油水分离器的分离效率的提高非常重要。为了全面了解该分离器内油水分离过程的内部流场,使用Fluent软件进行了基于Euler多相流分析和可实现的k-ε两方程湍流模型的数值模拟。通过正交阵列实验选择了用于数值模拟的隔板各种结构参数的最佳值范围。为了验证数值模拟结果的可靠性,对隔板进行了优化结构参数的现场试验。研究结果表明,分配器的水平位置,孔数和直径对油水分离效率有显着影响,分配器的纵向位置和堰板的位置对油/水分离效率影响不大。油/水分离效率。通过正交阵列实验获得的最佳结构参数导致油/水分离效率高达95%,比原始结构参数实现的效率高4.996%。

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