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Prediction of Particle Impact on an Archimedes Screw Runner Blade for Micro Hydro Turbine

机译:微液压涡轮机的Archimedes螺旋式叶片上的粒子冲击预测

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Energy is one of the most important sources in the world especially for developing countries. The subject study is conducted to predict the behaviour of particle due to errosion from the river through the achimedes screw runner and predict the impact of particle toward blade surface. For this reason, computational fluid dynamics (CFD) methods are used. The threedimensional flow of fluid is numerically analyzed using the Navier-Stokes equation with standard k-ε turbulence model. The reinverse design of archimedes screw blade was refered with the previous researcher. Flow prediction with numerical results such as velocity streamlines, flow pattern and pressure contour for flow of water entering the blade are discussed. This study shows that the prediction of particle impact occurs mostly on the entering surface blade and along the leading edge of the screw runner. Any modification on the design of the screw runner blade can be analyze for further study.
机译:能源是世界上最重要的来源之一,特别是为发展中国家。进行主题研究以预测由于河流通过Achimedes螺旋流道的误差引起的粒子的行为,并预测颗粒对叶片表面的影响。因此,使用计算流体动力学(CFD)方法。使用具有标准K-ε湍流模型的Navier-Stokes方程,使用Navier-Stokes方程进行数值分析流体的三维流动。 Archimedes螺旋刀片的恢复设计被先前的研究人员推荐。讨论了具有数值结果的流程预测,例如速度流线,流动图案和用于进入叶片的水流的流动图案和压力轮廓。该研究表明,颗粒冲击的预测主要发生在进入的表面叶片上以及沿着螺旋流道的前缘。对螺旋流道叶片设计的任何修改都可以进行进一步研究。

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