基于亲和规律设计的单通道泵的水力特性

Duc-Anh Nguyen, Min-Su Roh, Sung Kim, Soon-Young Jeong, Jin-Hyuk Kim
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引用次数: 0

摘要

近年来,单通道泵在国内污水处理中得到了广泛的应用。为了使这类泵能够在不同工频条件下在世界范围内得到应用,本研究利用亲和律对在前人基础上优化的单通道泵的叶轮几何形状进行了重新设计。同时,采用亲和法和切削直径法两种方法设计蜗壳。数值方法采用定常和非定常reynolds -average Navier-Stokes方程和剪切应力输运再附着修正(SST k-ω)湍流模型。对包括等高线和流线在内的水力曲线和内部流场进行了深入的研究和评价。数值结果通过基于11SUPth/SUPAPI610标准的实验测试得到了验证。在设计流量条件下,新型泵以最小的总扬程系数满足设计要求。与基本模型相比,新模型的效率几乎没有变化。在小流量和设计流量条件下,新模型的非定常径向力分布的掠面面积小于基本模型,而在大流量条件下则相反。此外,与基本模型相比,新模型的径向力中心与原点之间的距离也减小了。新模型的压力幅值也明显减小。这些新模型的改进主要是减少泵运行中的噪音和振动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydraulic Characteristics of a Single-channel Pump Designed by the Affinity Law
Recently single-channel pumps are widely applied for wastewater treatment in Korea. To be able to apply this type of pump in the world, which is different in power frequency, this study uses the affinity law to redesign the impeller geometry of the single-channel pump optimized from the previous work. Meanwhile, the volute is designed by two methods which are the affinity law and the cutting diameter method. The numerical approach is performed by using steady and unsteady Reynolds-averaged Navier-Stokes equations and a shear stress transport reattachment modification (SST k-ω) turbulence model. The hydraulic efficiency curves and internal flow field including contours and streamlines are investigated and evaluated thoroughly. The numerical result is verified by the experimental test based on the 11SUPth/SUPAPI610 standard. At the design flow rate condition, the novel pump models meet the design requirement with a minimum total head coefficient. The efficiency of the novel models remains almost unchanged compared to the base model. The sweep area of the unsteady radial force distribution in the novel models is smaller than that of the base model at low flow rate and design flow rate conditions while at high flow rate conditions show the opposite. In addition, the distance between the center of the radial force and the origin of the novel models is also reduced compared to the base model. The pressure amplitudes of the novel models are also decreased significantly. These improvements in the novel models mostly result in the reduction in noise and vibration in pump operation.
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