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Research on the coupling mechanism between alternating flow pattern and valve stem system of steam turbine control valve

机译:汽轮机控制阀交替流型与阀杆系统耦合机理的研究

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Control valve is an accident prone equipment in high-parameter steam turbine, and its safety directly influences the economy and safety of the unit. In this study, a control valve of a 600 MW subcritical unit used in the power plant was investigated to reveal the mechanism of flow induced vibration of the control valve. It is found that the intermittent vibration of the control valve is a fluid-solid interaction phenomenon, which occurs in middle-opening and transonic flow condition. The phenomenon is a variable damping and nonlinear vibration for the valve stem system. The experimental results show that as the valve head tilts to different positions, the pressure fluctuation at the valve seat changes significantly at the same time. Unsteady numerical simulation is conducted when valve head is in the center and tilts toward three different directions with the same angle. The results indicate that the separation point between the high jet flow and valve head is changing with time. The thick boundary layer caused by transonic flow and the moving high-pressure region induced by impinging jet flow are the two main reasons for the flow pattern alternation. The average unbalanced force of fluid acting on valve head varies as the flow pattern alternates. And its direction is from center to the narrower side of the annular channel in the oblique section when valve head is tilted.
机译:控制阀是高参数汽轮机中容易发生事故的设备,其安全性直接影响机组的经济性和安全性。在这项研究中,对发电厂中使用的600 MW亚临界机组的控制阀进行了研究,以揭示该控制阀由流量引起的振动的机理。发现控制阀的间歇振动是一种液-固相互作用现象,发生在中开度和跨音速流动状态。这种现象是阀杆系统的可变阻尼和非线性振动。实验结果表明,当阀头倾斜到不同位置时,阀座处的压力波动会同时发生显着变化。当阀头位于中央并朝三个不同方向以相同角度倾斜时,会进行不稳定的数值模拟。结果表明,高射流和阀头之间的分离点随时间变化。跨音速流动引起的厚边界层和冲击射流引起的运动的高压区域是流型交替的两个主要原因。随着流量模式的变化,作用在阀头上的流体的平均不平衡力会发生变化。当阀头倾斜时,其方向是从中央到环形通道在倾斜部分的较窄侧。

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