首页> 外文会议>ASME international design engineering technical conferences;Computers and information in engineering conference;Conference on mechanical vibration and noise >DYNAMIC CHARACTERISTICS OF FLUID FORCE INDUCED BY SWIRLING LEAKAGE FLOW BETWEEN ROTATIONAL AND STATIONARY DISKS
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DYNAMIC CHARACTERISTICS OF FLUID FORCE INDUCED BY SWIRLING LEAKAGE FLOW BETWEEN ROTATIONAL AND STATIONARY DISKS

机译:旋转盘与固定盘之间旋流泄漏流引起的流体动力特性

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Axial self-excited vibration may be induced in a balance piston by fluid with a tangential velocity component that flows into the piston orifices. To avoid such vibration, knowledge of the dynamic characteristics of axial self-excited vibration induced by swirling leakage flow is required at the design stage.In this research, the effect of axial rotation and swirl strength on the added fluid force coefficients is clarified by modeling the piston orifice as the combination of rotational and stationary disks, and deriving the unsteady fluid force generated by swirling leakage flow between the disks.As a result, reduction of the relative velocity in the circumferential direction is shown to destabilize the oscillatory system. In particular, the effect of swirl strength on the fluid force coefficient is found to be larger in the case of the divergent channel than in the case of the parallel flow path.
机译:平衡活塞中的轴向自激振动可能是由切向速度分量流入到活塞孔中的流体引起的。为了避免这种振动,在设计阶段就需要了解涡旋泄漏流引起的轴向自激振动的动力学特性。活塞孔是旋转盘和固定盘的组合,并通过盘之间的泄漏流涡旋产生不稳定的流体力。结果,减小了圆周方向的相对速度,使振荡系统不稳定。特别地,发现在分支通道的情况下,旋流强度对流体力系数的影响大于在平行流动路径的情况下。

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