Influence of Blade Number on Performance and Internal Flow Condition of Centrifugal Pump for Low Viscous Fluid Food

Q3 Engineering
T. Shigemitsu, Eito Nakaishi, M. Maeda, Y. Araki
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引用次数: 2

Abstract

There are many kinds of the fluid food transportation pumps depending on the characteristics of the fluid, i.e. a sanitary pump made from stainless steel, a screw pump and so on. A centrifugal pump was adopted as a fluid food pump in this research because it makes the stable continuous transportation of fluid food and the structure of the pump is simple compared to positive displacement pumps. The purpose of this research is to investigate the influence of the blade number on the pump performance and internal flow to enrich the pump design data for low viscous fluid food. The centrifugal pump with an open impeller was used and six impellers having the different blade number were prepared. Performance test using an experimental apparatus was conducted and the numerical analysis was also carried out. In the numerical analysis, the commercial software ANSYS-CFX16.2 was used. The head, shaft power and efficiency obtained by the numerical analysis, are almost the same with the experimental results. The head and shaft power increase with the increase of the blade number. The shear rate, which is concerned to fluid food quality, is high near the inlet region of the blade-to-blade passage for all types of blades. The shear rate of each type of the blade is discussed based on the numerical analysis results and relations between the blade number and shear rate are clarified.
叶片数对低粘性流体食品离心泵性能及内部流动状况的影响
根据流体的特性,流体食品输送泵有很多种,如不锈钢卫生泵、螺杆泵等。本研究采用离心泵作为流体食品泵,因为离心泵可以稳定连续地输送流体食品,并且与容积泵相比,泵的结构简单。本研究的目的是研究叶片数量对泵性能和内部流量的影响,以丰富低粘性流体食品泵的设计数据。使用具有开放式叶轮的离心泵,并制备了具有不同叶片数的六个叶轮。使用实验装置进行了性能测试,并进行了数值分析。在数值分析中,使用了商业软件ANSYS-CFX16.2。数值分析得到的扬程、轴功率和效率与实验结果基本一致。头部和轴功率随着叶片数量的增加而增加。对于所有类型的叶片,与流体食物质量有关的剪切速率在叶片到叶片通道的入口区域附近都很高。根据数值分析结果,讨论了每种类型叶片的剪切速率,并阐明了叶片数量与剪切速率之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Fluid Machinery and Systems
International Journal of Fluid Machinery and Systems Engineering-Industrial and Manufacturing Engineering
CiteScore
1.80
自引率
0.00%
发文量
32
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