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Influence of Cross-Sectional Flow Area of Annular Volute Casing on Transient Characteristics of Ceramic Centrifugal Pump

机译:环形蜗壳壳体横截面流动面积对陶瓷离心泵瞬态特性的影响

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摘要

Abstract The annular volute is typically used in a slurry pump to reduce the collisions between solid particles and the volute tongue and to achieve a better resistance to blocking. However, only limited studies regarding annular volutes are available, and there is no systematic design method for annular volutes. In this study, the influence of volute casing cross-sectional flow area on the hydraulic loss, pressure pulsations, and radial force under varying working conditions in a centrifugal ceramic pump are discussed in detail. Experimental tests were conducted to validate the numerical results. The results indicated that, when the volute casing flow area increases, the hydraulic performance decreases marginally under the rated working conditions, but increases at the off-design points, specifically under large flow condition. However, the volute casing with a larger flow area has a wider high-efficiency region. In addition, the increase in the volute casing flow area will decrease the pressure pulsations in the volute, regardless of the working condition, and decrease the radial force on the shaft, therefore, providing an improved pump operational stability. It is anticipated that this study will be of benefit during the design of annular volutes.
机译:摘要环形蜗壳通常用于浆料泵,以减少固体颗粒和蜗壳之间的碰撞,并实现更好的阻塞抵抗力。然而,只有关于环形蜗壳的有限研究可用,并且没有用于环形蜗壳的系统设计方法。在该研究中,详细讨论了在离心陶瓷泵中改变工作条件下的液压损耗,压力脉动和径向力下的蜗壳壳体横截面流动面的影响。进行实验测试以验证数值结果。结果表明,当蜗壳壳体流量面积增加时,在额定工作条件下,液压性能略微降低,但在偏离设计点,特别是在大流动条件下增加。然而,具有较大流动区域的蜗壳具有更广泛的高效率区域。另外,蜗壳壳体流量面积的增加将减小蜗壳中的压力脉动,无论工作条件如何,都会降低轴上的径向力,从而提供改进的泵操作稳定性。预计这项研究将在环形蜗壳设计期间有益。

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