Flow Characteristics and Stress Analysis of a Parallel Gate Valve

Гидравлические характеристики и анализ напряжений параллельного клинового затвора
Junye Li, Hui Wu, Zhixin Gao
2019-11-03

Reynolds number (200–500,000)flow coefficientgaps between disk and limit stopgroove depth (2.3–9 mm)loss coefficientparallel gate valvestress distribution of boltvalve opening degree (20%–100%)wedge-type double disk parallel gate valve
Gate valves have been widely used in the piping system and have attracted a lot of attention from researchers. In this paper, a wedge-type double disk parallel gate valve is chosen to be analyzed. The Reynolds number varying from 200 to 500,000, and the valve opening degree varying from 20% to 100%, and the groove depth varying from 2.3 mm to 9 mm are chosen to investigate their effects on the flow and loss coefficients of the gate valve. The results show that the loss coefficient decreases and the flow coefficient increases with the increase of the Reynolds number and the valve opening degree, while with the increase of the groove depth, the loss coefficient barely changes, but the flow coefficient increases if the Reynolds number is larger than 10,000. In addition, the effects of the gaps between the disk and the limit stop on the stress distribution of the bolt are also investigated, and the results show that if the gaps are negative, high stress will act on the bolt at the contact position between the bolt and the limit stop.
1
For a wedge-type double disk parallel gate valve, loss coefficient decreases and flow coefficient increases with increasing Reynolds number (Re from 200 to 500,000).
2
Increasing groove depth (2.3 mm to 9 mm) barely changes the loss coefficient, but increases the flow coefficient when Reynolds number exceeds 10,000.
3
Loss coefficient decreases and flow coefficient increases as valve opening degree increases (20% to 100%).
4
Negative gaps between the disk and the limit stop produce high stress on the bolt at the contact position between the bolt and the limit stop.

Wedge-type double-disk parallel gate valve (including disk, grooves, gaps, bolts, and limit stops) under flow and mechanical loading

Flow characteristics (loss coefficient, flow coefficient) across Reynolds numbers, valve opening degrees, groove depths, and stress distribution on bolts due to disk–limit-stop gaps

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2019-11-03
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Authors
Junye Li
Hui Wu
Zhixin Gao
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