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NUMERICAL INVESTIGATION ON THE VIBRATION OF STEAM TURBINE INLET VALVES AND THE FEEDBACK TO THE DYNAMIC FLOW FIELD

机译:汽轮机进口阀振动的数值研究及对动态流场的反馈

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The power output of steam turbines is controlled by steam turbine inlet valves. These valves have a large flow capacity and dissipate in throttled operation a huge amount of energy. Due to that, high dynamic forces occur in the valve which can cause undesired valve vibrations. In this paper, the structural dynamics of a valve are analysed. The dynamic steam forces obtained by previous computational fluid dynamic (CFD) calculations at different operating points are impressed on the structural dynamic finite element model (FEM) of the valve. Due to frictional forces at the piston rings and contact effects at the bushings of the valve plug and the valve stem the structural dynamic FEM is highly nonlinear and has to be solved in the time domain. Prior to the actual investigation grid and time step studies are carried out. Also the effect of the temperature distribution within the valve stem is discussed and the influence of the valve actuator on the vibrations is analysed. In the first step, the vibrations generated by the fluid forces are investigated. The effects of the piston rings on the structural dynamics are discussed. It is found, that the piston rings are able to reduce the vibration significantly by frictional damping. In the second step, the effect of the moving valve plug on the dynamic flow in the valve is analysed. The time dependent displacement of the valve is transferred to CFD calculations using deformable meshes. With this one way coupling method the response of the flow to the vibrations is analysed.
机译:汽轮机的功率输出由汽轮机进气阀控制。这些阀具有大流量,并且在节流操作中会耗散大量能量。因此,在阀中产生高动态力,这会引起不希望的阀振动。本文对阀门的结构动力学进行了分析。通过先前的计算流体动力学(CFD)计算在不同的工作点获得的动态蒸汽力被印在阀门的结构动态有限元模型(FEM)上。由于在活塞环上的摩擦力以及在阀芯和阀杆的衬套上的接触效应,结构动态有限元法是高度非线性的,必须在时域内解决。在实际调查之前,要进行网格和时间步研究。还讨论了气门杆内温度分布的影响,并分析了气门执行器对振动的影响。第一步,研究由流体力产生的振动。讨论了活塞环对结构动力学的影响。已经发现,活塞环能够通过摩擦阻尼显着减小振动。在第二步中,分析了活动阀芯对阀中动态流的影响。使用可变形网格将阀门随时间变化的位移转移到CFD计算中。通过这种单向耦合方法,可以分析流动对振动的响应。

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