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EVALUATION OF BLADE PASSAGE ANALYSIS USING COARSE GRIDS

机译:使用粗网格评估叶片通道分析

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This paper presents the results of a study using coarse grids to analyze the flow in the impellers of an axial flow pump and a mixed flow pump. A commercial CFD code (FLOTRAN) is used to solve the 3-D Reynolds Averaged Navier Stokes equations in a rotating cylindrical coordinate system. The standard k-ε turbulence model is used. The meshes for this study use 22,000 nodes and 40,000 nodes for the axial flow impeller, and 26,000 nodes for the mixed flow impeller. Both models are run on a SPARCstation 20. This is in contrast to typical analyses using in excess of 100,000 nodes. The smaller mesh size has advantages in the design environment. Stage design parameters for the axial flow impeller are, rotational speed 870 rpm, flow coefficient Φ=0.13, head coefficient Ψ=0.06, and specific speed 2.97 (8101 US). For the mixed flow impeller the parameters are, rotational speed 890 rpm, flow coefficient, head coefficient Ψ=0.094, and specific speed 2.01 (5475 US). Evaluation of the models is based on a comparison of circumferentially averaged results to measured data for the same impeller. Comparisons to measured data include axial and tangential velocities, static pressure, and total pressure. A comparison between the coarse and fine meshes for the axial flow impeller is included. Results of this study show that the computational results closely match the shapes and magnitudes of the measured profiles, indicating that coarse CFD models can be used to accurately predict performance.
机译:本文介绍了使用粗网格的研究结果,分析轴流泵的叶轮中的流动和混合流量泵。商业CFD码(Flotran)用于解决旋转圆柱坐标系中的3-D雷诺平均Navier Stokes方程。使用标准K-ε湍流模型。本研究的网格使用22,000个节点和40,000个节点,用于轴流叶轮,以及混合流叶轮的26,000个节点。这两种模型都在Sparcstation 20上运行。这与使用超过100,000个节点的典型分析相反。较小的网格尺寸在设计环境中具有优势。轴向流动叶轮的阶段设计参数是转速870rpm,流量系数φ= 0.13,头系数ψ= 0.06,特定速度2.97(8101 US)。对于混合流叶轮,参数是,转速890rpm,流量系数,头系数ψ= 0.094,以及特定速度2.01(5475 US)。对模型的评估基于对同一叶轮的测量数据的周向平均结果的比较。测量数据的比较包括轴向和切向速度,静压和总压力。包括轴流叶轮的粗糙和细网之间的比较。该研究的结果表明,计算结果与测量轮廓的形状和大小相匹配,表明粗型CFD模型可用于精确预测性能。

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