首页> 外文会议>STLE/ASME Joint International Tribology Conference >TRANSITION FROM LAMINAR TO TURBULENT FLOW REGIME IN THIN LUBRICATING FILM BETWEEN A STATIONARY AND A ROTATING DISK
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TRANSITION FROM LAMINAR TO TURBULENT FLOW REGIME IN THIN LUBRICATING FILM BETWEEN A STATIONARY AND A ROTATING DISK

机译:在静止和旋转盘之间的薄润滑膜中从层状到湍流状态的过渡

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Increasing in rotational speed in turbo machineries such as turbochargers or turbo-compressors, several types of fluid film bearings are operated in turbulent flow regime. The transition from laminar to turbulent flow regime causes a remarkable change in bearing characteristics. To predict the transition condition, therefore, is of importance for the design of high speed bearings. The purpose of this paper is to investigate the critical Reynolds number in thin lubricating film of thrust bearings and the fluid film characteristics in transient to turbulent flow regime. An experimental study for a sector-shaped parallel plane thrust bearing shows a decrease in bearing temperature due to the transition, and results in that the critical Reynolds number is 400~600. The critical Reynolds number obtained is smaller than the result of linear stability analysis, in which an infinitesimal perturbation has been assumed. The reason of this difference is considered to be an effect of finite disturbance and local temperature rise in the bearing. THL analysis in laminar to turbulent flow regime results in reasonable agreement with the experimental results with respect to bearing temperature.
机译:在涡轮机或涡轮压缩机等涡轮机机器中的转速增加,几种类型的流体膜轴承在湍流状态下操作。从层流到湍流状态的过渡导致轴承特性变化显着变化。因此,为了预测过渡条件,对于高速轴承的设计是重要的。本文的目的是研究瞬时止动轴承的薄润滑膜中的临界雷诺数,以及瞬态流动流动状态的流体膜特性。扇形平行平面推力轴承的实验研究表明,由于过渡而导致的轴承温度降低,并导致关键的雷诺数为400〜600。所获得的关键雷诺数小于线性稳定性分析的结果,其中已经假设了无限的扰动。这种差异的原因被认为是轴承有限干扰和局部温度升高的影响。在流动流到湍流方案中的THL分析与轴承温度相对于轴承温度的实验结果合理。

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