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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Aerodynamic torque of a butterfly valve - Influence of an elbow on the time-mean and instantaneous aerodynamic torque
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Aerodynamic torque of a butterfly valve - Influence of an elbow on the time-mean and instantaneous aerodynamic torque

机译:蝶阀的气动扭矩-弯头对时间平均和瞬时气动扭矩的影响

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摘要

Many technological devices use butterfly valves to control the flow of the process or as safety unit. The principal advantages of this type of valve are their simplicity their low cost, their speed of closing and the weak pressure drop which they produce when they are completely open. for installations of large size, the actuator of the valve can be very expensive: thus it is essential to know well the fluid forces and the resulting torque exerted on the valve. Consequently, the variation of the shaft torque of the butterfly valves according to the opening is of great interest to calculate the power of the actuator. Initially the flow around the valve is characterized by means of hot wire anemometry. It is noted that the disturbances induced by the elbow and/or the valve are felt until a distance from approximately 8 times the pipe diameter. A method of direct measurement by torquemeter and an indirect method by integration of the pressure forces on the faces of the valve give access to the time-mean and instantaneous torque on the valve shaft. Comparisons between the direct and indirect measurement of the torque are made before engaging the analysis of the results. Close to the full opening, the torque presents fluctuations harmful to suitable lifespan of the valve. Compared to the straight pipe case, the temporal and spectral analyses of the instantaneous torque prove that the elbow induces important fluctuations when the valve is completely open. Several tests carried out according to the valve/elbow spacing sow that thee effects disappear beyond a distance from 8 to 10 times the diameter of the pipe. [S0098-2202(00)02902-3]. [References: 13]
机译:许多技术设备都使用蝶阀来控制过程流或作为安全单元。这种阀门的主要优点是简单,成本低,关闭速度快以及完全打开时产生的压降低。对于大型设备,阀门的执行器可能非常昂贵:因此必须了解流体力以及施加在阀门上的扭矩。因此,蝶阀的轴扭矩根据开度的变化对于计算执行器的功率非常重要。最初,通过热线风速测定法对阀周围的流量进行表征。注意,直到大约8倍于管道直径的距离,才感觉到由弯头和/或阀门引起的干扰。通过扭矩计直接测量的方法和通过积分阀表面压力的间接方法可以访问阀轴上的时间平均转矩和瞬时转矩。在进行结果分析之前,先对扭矩的直接和间接测量进行比较。接近全开时,扭矩会产生波动,这会影响阀门的适当使用寿命。与直管情况相比,瞬时扭矩的时间和频谱分析证明,当阀门完全打开时,弯头会引起重要的波动。根据阀/弯管间距进行了几次测试,结果超出管道直径8至10倍的距离消失。 [S0098-2202(00)02902-3]。 [参考:13]

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