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Effects of the geometrical features of flow paths on the flow capacity of a control valve trim

机译:流动路径几何特征对控制阀修剪的流量的影响

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摘要

Control valves are an integral part of a number of energy systems, such as those used in chemical and nuclear industries. These valves are used to regulate the amount of fluid flow passing through these systems. A key component of a control valve is its trim, which in case of a multi-stage continuous-resistance trim consists of a staggered arrangement of columns. Flow passing through the channels formed between adjacent columns (also called as flow paths), loses a significant amount of its energy and regulates the pressure field. As the geometrical features of these flow paths dictate the flow capacity of the trim, systematic investigations have been carried out to analyse the complex flow behaviour within these flow paths. Well-verified computational fluid dynamics based solver has been used to investigate the effects of the geometrical features of flow paths on the flow capacity of the trim, at various valve opening positions. It has been noticed that reducing the size of flow paths increases the flow capacity of the trim, however, at a critical flow path size, the inherent opening characteristics of a trim have been observed to alter. In order to recover the original opening behaviour of the trim, careful manipulation of the flow paths is required, which has been successfully achieved in the present investigation.
机译:控制阀是许多能量系统的组成部分,例如用于化学和核工业的那些。这些阀用于调节通过这些系统的流体流量的量。控制阀的一个关键部件是其装饰,在多级连续电阻修剪的情况下,该柱的交错布置。通过相邻柱之间形成的通道的流动(也称为流动路径),失去了大量的能量并调节压力场。随着这些流动路径的几何特征决定了修剪的流量,已经进行了系统的研究以分析这些流动路径内的复杂流动。已经稳定的计算流体动力学基于基于阀门打开位置的流动路径的几何特征对各种阀门打开位置的流动容量的影响。已经注意到,减小流动路径的尺寸增加了装饰的流量,然而,在临界流动路径尺寸下,已经观察到修剪的固有的打开特性改变。为了恢复装饰的原始打开行为,需要仔细操纵流动路径,在本研究中已成功实现。

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