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Investigation of friction power consumption and performance of a water turbine seal based on the imbalanced rotation of nano-magnetic fluids:

机译:基于纳米磁性流体不平衡旋转的水轮机密封件的摩擦功率消耗和性能研究:

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The calculation of friction power consumption and the performance of nano-magnetic fluids in sealed water turbines have proved to be hurdles in studies on nano-magnetic fluidic device designs and applications. In this article, we investigate the imbalanced rotation Ω?≠?1/2 (rot υ) of a nano-magnetic fluid suspended in a paramagnetic carrier liquid. Through Langevin and Navier–Stokes equations, the formula for the theoretical friction power consumption can be calculated for the magnetic particles in the nano-magnetic fluid. The calculated value shows a well agreement with the test result. Further simulation indicates that the magnetic field gradient ΔBsum between the tooth space (wave trough) and the pole tooth (wave crest) has the most influence on the imbalanced rotation in a sealed nano-magnetic fluid device in a water turbine. Specifically, the larger the ΔBsum, the more obviously imbalanced the nano-magnetic fluid rotation will be at that location; and the imbalanced torque will be larger, so the seal...
机译:密封水轮机中摩擦功率消耗的计算和纳米磁性流体的性能已被证明是纳米磁性流体装置设计和应用研究的障碍。在本文中,我们研究了悬浮在顺磁性载液中的纳米磁性流体的不平衡旋转Ω?≠?1/2(旋转υ)。通过Langevin和Navier–Stokes方程,可以计算出纳米磁性流体中磁性颗粒的理论摩擦功率消耗公式。计算值与测试结果吻合良好。进一步的仿真表明,在水轮机中的密封纳米磁性流体装置中,齿隙(波谷)和极齿(波峰)之间的磁场梯度ΔBsum对不平衡旋转的影响最大。具体来说,ΔBsum越大,纳米磁性流体在该位置的旋转越明显。而且不平衡的扭矩会更大,所以密封...

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