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Finite-element coupled analyses of the Reynolds and Hagen-Poiseuille equations to calculate pressure and flow of fluid dynamic bearings with a recirculation channel

机译:雷诺和Hagen-Poiseuille方程的有限元耦合分析,以计算具有再循环通道的流体动力轴承的压力和流量

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摘要

A finite-element analysis was proposed to evaluate pressure, flow, friction torque, and load capacity of coupled fluid dynamic thrust and journal bearings (CFDBs) with a recirculation channel (RC). The numerical program was developed to simultaneously solve the discretized equations of Reynolds lubrication for the CFDBs and the Hagen-Poiseuille flow for the RC. The proposed method was validated using a two-step procedure. As a first step, the measured flying height was compared with the simulated height. As a second step, pressure, friction torque, and flow calculated from the proposed method were compared with those calculated using computational fluid dynamics software. These results confirmed that the proposed method can effectively predict performances of the CFDBs with an RC.
机译:提出了一种有限元分析来评估耦合的流体动态推力和轴颈轴承(CFDB)的压力,流量,摩擦扭矩和负载能力(RC)。 开发了数值程序,以便同时解决RCDB的雷诺斯润滑的离散方程和RC的Hagen-Poiseuille流。 使用两步程序验证了所提出的方法。 作为第一步,将测量的飞行高度与模拟高度进行比较。 作为第二步骤,与使用计算流体动力学软件计算的那些进行比较来自所提出的方法计算的压力,摩擦扭矩和流量。 这些结果证实,所提出的方法可以有效地预测CFDB与RC的性能。

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