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Hydraulic performance analysis and model test of a sump shared by two pumps in a column

机译:列中两个泵共用一个油槽的水力性能分析和模型测试

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Three-dimensional incompressible Navier-Stokes equations closed by RNG Κ - ε turbulent model were adopted to simulate the internal flow of a sump shared by two cooling pumps. Computed results show that the bottom slop of the forbay and asymmetric operation scheme of pump sets will result in unfavorable flow conditions, and swirl angles of flow entering the suction pipe of pump are quantitatively analyzed. Since two pumps share a sump in a column, the auxiliary cooling pump in front will interfere with the flow fields of the sump, which is not favorable to the flow conditions of the main cooling pump. Three operation schemes with or without the auxiliary cooling pump were simulated to compare the influence of the flow fields of sump on the flow conditions of the main cooling pump, and the bias angles of flow entering the suction pipe are quantitatively calculated. The validity and reliability of numerical simulation are verified by a model test. The findings indicate that the computational fluid dynamics can be successfully applied to 3D flow of pump sump and numerical computation can provide reliable references for theoretical analyses, model test and modification of design scheme.
机译:采用由RNGκ-ε湍流模型封闭的三维不可压缩Navier-Stokes方程来模拟两个冷却泵共享的集油槽的内部流动。计算结果表明,前舱底面倾斜和泵组的不对称运行方案将导致不利的流动条件,并对进入泵的吸入管的流体的旋流角进行了定量分析。由于两个泵在一个列中共用一个油槽,因此前面的辅助冷却泵将干扰油槽的流场,这不利于主冷却泵的流动条件。模拟了三种有无辅助冷却泵的运行方案,以比较油底壳流场对主冷却泵流动条件的影响,并定量计算进入吸水管的偏流角。通过模型测试验证了数值模拟的有效性和可靠性。研究结果表明,流体动力学计算可以成功地应用于油底壳的3D流动,数值计算可以为理论分析,模型试验和设计方案的修改提供可靠的参考。

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