叶轮
机械
流量(数学)
流量系数
职位(财务)
无量纲量
内部流动
工作(物理)
流动条件
体积流量
主管(地质)
比转速
赫尔肖流
流速
材料科学
明渠流量
势流
控制理论(社会学)
压头
逆压力梯度
流体力学
液压头
压力系数
流动分离
离心泵
质量流量计
流量测量
压力降
质量流
模拟
作者
Q. Q. Li,Xiao Lou,Deli Tang,Xu Zhou,Fengfeng Bie
标识
DOI:10.1177/09576509261428245
摘要
Regenerative flow pumps (RFPs) are widely used in applications requiring high head and compact design, yet their hydraulic efficiency is often limited by complex internal flow losses. To address this issue, a systematic study on the influence of the radial position of flow components is essential for performance optimization. In this paper, five RFPs with flow components at different relative radial positions are designed and the influence on the internal flow and energy exchange characteristics inside the pump is investigated by theorical method, numerical simulation and experimental validation. A position coefficient P r is proposed to quantify the relative radial position of the flow components. The results show that the RFP’s head and hydraulic efficiency are improved with the increase of P r . In the models with larger value of P r , the pressure’s growing speed is faster, and the high-velocity and low-velocity regions are distributed regularly. The distribution of the Ω-vorticity is corresponded with the exchange flow between the impeller and channel. However, in the models with smaller value of P r , the mess distribution of the velocity and pressure in the flow regions induces the formation of adverse secondary flow and flow blockage, which leads to weak exchange intensity. Further, the energy loss in the RFP, measured by a dimensionless parameter E S , is gradually decreased as the value of P r increases, which illustrates that the effective work accounts for a large proportion and the high efficiency is achieved when P r is large.
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