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Expansion of High Efficiency Region of Wind Energy Centrifugal Pump Based on Factorial Experiment Design and Computational Fluid Dynamics

机译:基于因子实验设计和计算流体动力学的风能离心泵高效率区域的扩展

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摘要

The wind energy pump system is a new green energy technology. The wide high efficiency region of pump is of great significance for energy conservation of wind power pumping system. In this study, factorial experiment design (FED) and computational fluid dynamics (CFD) are employed to optimize the hydraulic design of wind energy centrifugal pump (WECP). The blade outlet width b(2), blade outlet angle beta(2), and blade wrap angle psi are chosen as factors of FED. The effect of the factors on the efficiency under the conditions of 0.6Q(des), 0.8Q(des), 1.0Q(des), and 1.4Q(des) is systematically analyzed. The matching feature of various volute tongue angle with the optimized impeller is also investigated numerically and experimentally. After the optimization, the pump head changes smoothly during full range of flow condition and the high efficiency region is effectively improved. The weighted average efficiency of four conditions increases by 2.55%, which broadens the high efficiency region of WECP globally. Besides, the highest efficiency point moves towards the large flow conditions. The research results provide references for expanding the efficient operation region of WECP.
机译:风能泵系统是一种新的绿色能源技术。泵浦宽高效率区域对于风电泵系统的节能具有重要意义。在本研究中,采用因子实验设计(FED)和计算流体动力学(CFD)来优化风能离心泵(WECP)的液压设计。叶片出口宽度B(2),叶片出口角β(2)和叶片缠绕角Psi被选中作为喂养的因素。系统地分析了0.6Q(des),0.8q(des),1.0q(des),1.0q(des)和1.4q(des)条件下效率的影响。还在数值和实验上研究了各种蜗壳舌舌与优化叶轮的匹配特征。优化后,泵头在全系列流量条件下平滑地改变,并且有效地改善了高效率区域。四种条件的加权平均效率增加2.55%,扩大全球WECP的高效率区域。此外,最高效率点向大流动条件移动。研究结果提供了扩展WECP有效操作区域的参考。

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