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首页> 外文期刊>Journal of Scientific & Industrial Research >Experimental and Numerical Study of Efficiency Improvement by Surface Coating on the Impellers and Diffusers of Mixed Flow Submersible Borewell Pumps
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Experimental and Numerical Study of Efficiency Improvement by Surface Coating on the Impellers and Diffusers of Mixed Flow Submersible Borewell Pumps

机译:混流潜孔泵的叶轮和扩散器表面涂层提高效率的实验和数值研究

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摘要

This study focuses on the effect of surface coating on the impellers and diffusers in improving the efficiency of mixed flow submersible borewell pumps. It consists of two parts. In the first part, a 3 stage pump was constructed with uncoated bronze impellers and cast iron diffusers having a surface roughness value of 2.5μm Ra and tested for pump performance. Then the same 3 stage pump was tested with impellers, diffusers coated with a polymeric coating having a surface roughness of 0.2μm Ra and ceramic enamel having a surface roughness of 0.8μm Ra. Experimental results showed considerable improvement, upto 4.5% in pump efficiency. In the second part, performance of the 3 stage pump was simulated using CFD tool Ansys Fluent for a surface roughness of 2.5um Ra in the cast iron diffuser passage and bronze impeller passage. The same model was simulated with reduced surface roughness values viz. 0.2μm Ra surface roughness of polymeric coating and 0.8μm Ra surface roughness of ceramic enamel coating. The pressure and velocity distributions were analysed and input power calculations were made. Simulation results also show that the pump efficiency has improved and found matching with experimental results.
机译:这项研究的重点是叶轮和扩散器表面涂层在提高混流潜孔泵的效率方面的作用。它由两部分组成。在第一部分中,使用表面粗糙度值为2.5μmRa的无涂层青铜叶轮和铸铁扩散器构造了一个三级泵,并对泵的性能进行了测试。然后,使用叶轮,扩散器涂覆了表面粗糙度为0.2μmRa的聚合物涂层以及陶瓷搪瓷的表面粗糙度为0.8μmRa的同一个三级泵进行了测试。实验结果表明,泵效率有显着提高,最高可达4.5%。在第二部分中,使用CFD工具Ansys Fluent对三级泵的性能进行了模拟,得出铸铁扩散器通道和青铜叶轮通道中的表面粗糙度为2.5um Ra。用减小的表面粗糙度值来模拟相同的模型。聚合物涂层的Ra表面粗糙度为0.2μm,陶瓷搪瓷涂层的Ra表面粗糙度为0.8μm。分析了压力和速度分布,并进行了输入功率计算。仿真结果还表明,泵的效率有所提高,并与实验结果相吻合。

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