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Establishment and solution of governing equation for plana-grooved liquid seals based on three-control-volume theory

机译:基于三控制体积理论的平面槽液密封控制方程的建立与解决方法

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Purpose This paper aims to study the dynamic characteristics of the straight-through labyrinth seals, which is applied on an oil sealing belt of hydrostatic support system (HSS) oil pocket, the establishment and solution process of seal governing equation is deduced. Design/methodology/approach The three-control-volume model theory is an efficient approach that is applied well. This paper starts with three relative governing equations for the flow characteristics of straight-through labyrinth seals in the plane direction. Referring to the establishment process of governing equations for circumferentially-grooved liquid seals, the governing equation based on space rectangular coordinate system is established, which are transformed into dimensionless equations through a nondimensionalized process and solved by a perturbation method. It contains a zeroth-order equation, through which a steady fluid distribution is determined, and a first-order equation, through which the seal's dynamic coefficients can be acquired. Findings The governing equation for plane-grooved straight-through labyrinth seals can be established and solved by the three-control-volume theory. Originality/value In this paper, a straight-through labyrinth seal is installed in an oil sealing belt. The three-control-volume governing equations is established in space rectangular coordinate system, and the shear force of the fluid Y-direction is different from the previous model.
机译:目的本文旨在研究直通迷宫式密封的动态特性,该密封件应用于静液压载体系统(HSS)油袋的油封带,推导出密封控制方程的建立和解决方法。设计/方法/方法三控制体积模型理论是一种良好应用的有效方法。本文从平面方向上的直通迷宫密封件的流动特性开始三个相对控制方程。参考周向沟槽液体密封的控制方程的建立过程,建立了基于空间矩形坐标系的控制方程,其通过非杂化过程变为无量纲方程,并通过扰动方法解决。它包含一个Zeroth阶级,通过该方程,通过该方程,通过该方程,并且可以通过该稳定流体分布和一阶方程来获取密封的动态系数。发现并通过三控制体积理论建立和解决平面沟槽直通式迷宫密封的控制方程。本文的原创性/值,直通迷宫式密封安装在油封带中。在空间矩形坐标系中建立三控制体积控制方程,流体y方向的剪切力与先前的模型不同。

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