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Design of cages in globe valve

机译:截止阀的保持架设计

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摘要

A globe valve is a common device that performs flow control in a pipe system. The flow capability of the globe valve is estimated by a flow coefficient. To improve the control capability of the globe valve, a cage is utilized to adjust the flow coefficient in the valve. For example, if one feels like decreasing the flow coefficient, then a cage with numerous passageways will be considered rather than replacing a smaller valve and pipe. A double cages design is also employed to reach the same purpose. The flow coefficient of the valve is associated with passageways in the cage. Provided that the relationship between the total cross-sectional area of passageways and the flow coefficient is known, then one will be able to design another cage with required and re-allocated passageways to control the variation of flow coefficient. The objective of this study is to use computational fluid dynamic technique to predict the relationship. Furthermore, one can change variation of flow coefficient in a globe valve using a new designed cage with re-allocated passageways. Again, the change of the cage on the flow coefficient can be validated by computational fluid dynamics again. This approach would be useful for a valve engineer to design a cage to control the flow capability in a globe valve.
机译:截止阀是在管道系统中执行流量控制的常用设备。截止阀的流量通过流量系数估算。为了提高截止阀的控制能力,利用阀笼来调节截止阀中的流量系数。例如,如果感觉像降低流量系数,那么将考虑使用具有许多通道的阀笼,而不是更换较小的阀和管道。为了达到相同的目的,还采用了双笼式设计。阀的流量系数与阀笼中的通道相关。只要知道通道的总截面积和流量系数之间的关系,那么人们就可以设计另一只具有所需和重新分配的通道的阀笼,以控制流量系数的变化。这项研究的目的是使用计算流体动力学技术来预测这种关系。此外,使用新设计的带有重新分配通道的阀笼,可以改变截止阀中流量系数的变化。同样,可以通过计算流体动力学再次验证保持架在流量系数上的变化。这种方法对于阀门工程师设计阀笼以控制截止阀中的流量能力很有用。

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