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Numerical Simulation for influence of inducer geometric parameters on performance

机译:诱导型几何参数对性能影响的数值模拟

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The influence of the geometric parameters on performance of inducer was deeply analyzed. A numerical simulation of the inducer was introduced by using software FLUENT. Reynolds Averaged Navier-Stokes equations was dispersed and solved with K-ε turbulence model and the SIMPLE algorithm in double coordinate system. The numerical simulation predicted the distribution law of the pressure and velocity in inducer with different axial lengths and leading edge sharpened. The results show that there is an evident change of pressure and efficiency in the inducer as the axial length angle change, the best cascade solidity is between 2 ~ 3. The study also found that the leading edge sharpened can improve the performance of inducer, and moreover, the greater of the flow rate, the more obvious improvements in performance.
机译:几何参数对诱导剂性能的影响深受分析。使用软件流畅引入了诱导剂的数值模拟。 Reynolds平均纳维埃斯 - Stokes方程被k-ε湍流模型分散并解决了双坐标系中的简单算法。数值模拟预测了不同轴向长度和前缘锐化的诱导仪中压力和速度的分布规律。结果表明,诱导剂中的压力和效率变化明显变化,因为轴向长度角度变化,最佳的级联固体在2〜3之间。该研究还发现,前缘锐化可以提高诱导剂的性能,而且,流速的越大,性能的提高越明显。

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