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Microflow leakage through the clearance of a metal-metal seal

机译:通过金属-金属密封间隙的微流泄漏

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摘要

The motivation behind this study is to simulate high pressure gas flow through the clearance between a valve seat and disc when in a closed position using a representative model. This leakage phenomenon is common in metal-to-metal seal pressure relief valves. As a pressure relief valve reaches the set pressure, it is known for the leakage to increase. The representative model that we studied is of an ideal-gas flow through a 2D micro-channel in the slip flow regime. We used a laminar continuum flow solver which solved the mass, momentum and energy equations. In addition, we applied low pressure slip boundary conditions at the wall boundaries which considered Maxwell's model for slip. The channel height was varied from 1μm to 5μm while the length remained at 1.25 mm, this means the length to height ratio varied from 1250 to 250. Inlet pressure was varied from a low pressure (0.05 MPa) to a high pressure (18.6 MPa), while the outlet remained constant at atmospheric. The calculated mass flow rate is compared to an analytical solution giving very good agreement for low pressure ratios and high length to height ratios.
机译:这项研究的目的是使用代表性模型模拟在关闭位置时通过阀座和阀瓣之间间隙的高压气流。这种泄漏现象在金属对金属密封的泄压阀中很常见。当泄压阀达到设定压力时,泄漏会增加。我们研究的代表性模型是在滑流状态下理想气体通过2D微通道的流动。我们使用了层流连续流求解器,它求解了质量,动量和能量方程。另外,我们在考虑了麦克斯韦滑移模型的壁边界处应用了低压滑移边界条件。通道高度在1μm到5μm之间变化,而长度保持在1.25 mm,这意味着长度与高度之比在1250到250之间变化。入口压力从低压(0.05 MPa)改变到高压(18.6 MPa)。 ,而出口则保持常压。将计算出的质量流率与分析解决方案进行比较,从而为低压比和高长高比提供了很好的一致性。

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