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NUMERICAL SIMULATION AND STEREO PIV TEST OF INNER FLOW IN A DOUBLE BLADES PUMP

机译:双叶片泵内部流动的数值模拟与立体声PIV测试

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摘要

A double blades pump is widely used in sewage treatment industry, while at present the research on the internal flow characteristics of the double blades pump is very few. So, the CFD technology and the stereo PIV test technique are applied to study the inner flow in a double blades pump whose specific speed is 110.9. The commercial code FLUENT is used to simulate the inner flow in the double blades pump at 0.6Qd, 0.8Qd, 1.0Qd, 1.2Qd and 1.4Qd. The RNG k-ε turbulence model and SIMPLEC algorithm are used in FLUENT. According to the results of the three-dimensional steady numerical simulation, the distributions of velocity field in the impeller are obtained at the five different operating conditions. The analysis of the numerical simulation results shows that there is an obvious vortex in the impeller passage at off-design conditions. But the number, location and area of the vortex are different from each operation condition. In order to validate CFD simulation results, the stereo PIV is used to test the absolute velocity distribution in the double blades pump at Jiangsu University. The distributions of three-dimensional absolute velocity field at the above five different operating conditions are obtained by the PIV test, and the measured results are compared with the CFD simulation results. The comparison indicates that there are vortexes in impeller passages of the double blades pump under the five operating conditions. But as to the area of the vortex and the relative velocity values of the vortex core, there are some differences between the experiment results and the numerical simulation results. The research work can be applied to instruct the hydraulic design of double blades pumps.
机译:双刀片泵广泛用于污水处理行业,而目前对双叶片泵的内部流动特性的研究很少。因此,应用CFD技术和立体声PIV测试技术来研究特定速度为110.9的双叶片泵中的内流。商业代码流畅,用于在0.6QD,0.8QD,1.0QD,1.2QD和1.4QD中模拟双叶片泵中的内流。 RNG K-ε湍流模型和简单算法用于流利。根据三维稳定数值模拟的结果,在五种不同的操作条件下获得叶轮中的速度场的分布。对数值模拟结果的分析表明,叶轮通道中存在明显的涡流,在非设计条件下。但涡旋的数量,位置和面积与每个操作条件不同。为了验证CFD仿真结果,立体声PIV用于测试江苏大学双叶片泵中的绝对速度分布。通过PIV测试获得上述五种不同操作条件的三维绝对速度场的分布,并将测量结果与CFD仿真结果进行比较。比较表明,在五个操作条件下,双叶片泵的叶轮通道中存在涡旋。但是对于涡旋的面积和涡旋核心的相对速度值,实验结果与数值模拟结果之间存在一些差异。可以应用研究工作来指示双叶片泵的液压设计。

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