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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Calculation of flow in incompressible regenerative turbo-machines with bucket form blades based on the geometry of flow path
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Calculation of flow in incompressible regenerative turbo-machines with bucket form blades based on the geometry of flow path

机译:基于流道的几何计算带叶片叶片的不可压缩再生式涡轮机的流量

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Purpose Regenerative flow pumps are dynamic machines with the ability to develop high heads at low flow rates. Simplicity, compactness, stable features and low manufacturing costs make them interesting for many applications in industries. The purpose of this study is to present a new method for calculating the flow through regenerative pumps with bucket form blades to predict the performance curves by a cheap and easy-to-use way. Design/methodology/approach The analysis was carried out based on the geometric shape of a fluid particle trajectory in a regenerative turbomachine. The fluid particle path was assumed to be a helix wrapped into a torus. Loss models were considered and the results of predictions were compared with computational fluid dynamics (CFD) data. Findings The overall trend of performance curves resulted from presented model looked consistent with CFD data. However, there were slight differences in high and low flow coefficients. The results showed that the predicted geometric shape of the flow path with the presented model (a helix wrapped into a torus) was not consistent with CFD results at high flow coefficients. Due to the complexity and turbulence of the fluid flow and errors in the calculation of losses, as well as slip factor, there was a discrepancy between the results of the presented model and numerical simulation, especially in high and low flow coefficients. Originality/value The analysis was carried out based on the geometric shape of a fluid particle trajectory in a regenerative turbomachine with bucket form blades. The fluid particle path was assumed to be a helix wrapped into a torus.
机译:目的蓄热式流量泵是动态机器,能够在低流量下产生高扬程。简单,紧凑,稳定的功能和较低的制造成本使它们成为工业中许多应用的关注点。这项研究的目的是提出一种新的方法,用于计算通过带有叶片叶片的再生泵的流量,从而以一种便宜且易于使用的方式来预测性能曲线。设计/方法/方法基于再生涡轮机中流体颗粒轨迹的几何形状进行分析。假定流体粒子路径是包裹在圆环中的螺旋线。考虑了损失模型,并将预测结果与计算流体动力学(CFD)数据进行了比较。结果由提出的模型得出的性能曲线的总体趋势看起来与CFD数据一致。但是,高流量系数和低流量系数略有不同。结果表明,在高流动系数下,所提出的模型(螺旋缠绕成环形)的流路预测几何形状与CFD结果不一致。由于流体流动的复杂性和湍流以及损失计算以及滑移系数的误差,因此所提出的模型结果与数值模拟之间存在差异,尤其是在高和低流动系数方面。独创性/价值基于带有叶片叶片的再生式涡轮机中流体粒子轨迹的几何形状进行了分析。假定流体粒子路径是包裹在圆环中的螺旋线。

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