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Influence of wall roughness on the static performance and pressure fluctuation characteristics of a double-suction centrifugal pump

机译:壁面粗糙度对双吸离心泵静态性能和压力波动特性的影响

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摘要

The unsteady flow field and pressure fluctuations in double-suction centrifugal pumps are greatly affected by the wall roughness of internal surfaces. To determine the wall roughness effect, numerical and experimental investigations were carried out. Three impeller schemes for different wall roughness were solved using detached eddy simulation, and the performance and pressure fluctuations resolved by detached eddy simulation were compared with the experimental data. The results show that the effects of wall roughness on the static performance of a pump are remarkable. The head and efficiency of the tested double-suction centrifugal pump are raised by 2.53% and 6.60% respectively as the wall roughness is reduced by means of sand blasting and coating treatments. The detached eddy simulation method has been proven to be accurate for the prediction of the head and efficiency of the double-suction centrifugal pump with roughness effects. The influence of the roughness on pressure fluctuation is greatly dependent on the location relative to the volute tongue region. For locations close to the volute tongue, the peak-to-peak value of the pressure fluctuations of a wall roughness of R _(a) = 0.10 mm may be 23.27% larger than the case where R _(a) = 0.02 mm at design flow rate.
机译:双吸离心泵的非恒定流场和压力波动受内表面壁面粗糙度的影响很大。为了确定壁面粗糙度的影响,进行了数值和实验研究。利用分离涡模拟求解了三种不同壁厚的叶轮方案,并将分离涡模拟求解的性能和压力波动与实验数据进行了比较。结果表明,壁面粗糙度对泵的静态性能影响显着。由于通过喷砂和涂层处理降低了壁面粗糙度,因此,经过测试的双吸离心泵的扬程和效率分别提高了2.53%和6.60%。事实证明,分离涡模拟方法对于具有粗糙度影响的双吸离心泵的扬程和效率的预测是准确的。粗糙度对压力波动的影响在很大程度上取决于相对于蜗舌区域的位置。对于靠近蜗舌的位置,壁粗糙度R _(a)= 0.10 mm的压力波动的峰峰值可能比R _(a)= 0.02 mm的情况大23.27%。设计流速。

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