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Experimental investigation on control and reduction of vibration induced by fluid flow in turbine governing valve

Experimental investigation on control and reduction of vibration induced by fluid flow in turbine governing valve
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摘要 Governing valve is the necessary passage through which steam enters into the steam turbine. The instability of the gas flow inside valve is the main reason that can induce the valve vibration, especially the valve rod vibration. In order to reduce the vibration and improve the performance of the governing valve such as the security and economy of the steam turbine, we try to find the method by experimental investigation. As to commonly used governing valve such as ball governing valve in this paper, a number of micro pressure sensors that have high frequencies and nice dynamic capability are employed successfully. The micro sensors are inserted directly in key positions of the valve, such as positions of valve seat throat, valve disc top and so on. The collection and measurement of many different working conditions are carried out and the conclusion of the valve instability is obtained. Therefore, vibration induced by fluid flow is controlled and reduced by means of regulating operation conditions and valve structure. Meanwhile, by numerical simulation of ball governing valve, valve disc adhered flow and asymmetric collision force are considered as main factor to cause oscillation under the condition of small lift as well as small and middle pressure ratio.
出处 《Journal of Energy and Power Engineering》 2007年第1期57-62,共6页 能源与动力工程(美国大卫英文)
关键词 CONTROL experimental investigation vibration induced by fluid flow governing valve 振动控制 流动实验 流体流动 管阀 微型压力传感器 涡轮 诱导 微型传感器
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