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Effect of T-groove Parameters on Steady-State Characteristics of Cylindrical Gas Seal

机译:T型槽参数对圆柱气密封件稳态特性的影响

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Gas film seal technology is becoming increasingly important as an advanced new rotary shaft seal technology in aviation engines and industrial gas turbines. In this paper the impacts of several parameters of T-groove cylindrical gas seal such as groove number, groove depth, groove width ratio, dam groove width ratio and floating ring length on the steady-state characteristics of cylinder film seal are studied in detail by the method of control variable using computational fluid dynamics software, and the focuses are on the pressure distribution, the gas film stiffness, and the leakage. Results show that with the increase of the number of grooves, the gas film stiffness increases gradually, but the leakage and leakage stiffness ratio decrease. The results also show that with the increase of groove depth, there is a maximum value for the gas film stiffness and a minimum value forleakage. This research plays an important role in guiding the design and the application of cylindrical gas seal.
机译:在航空发动机和工业燃气轮机中,作为一种先进的新型旋转轴密封技术,气膜密封技术正变得越来越重要。本文详细研究了T型槽圆柱气密封件的几个参数,如槽数,槽深,槽宽比,坝槽宽比和浮环长度对气缸膜密封件稳态特性的影响。使用计算流体动力学软件控制变量的方法,重点是压力分布,气膜刚度和泄漏。结果表明,随着沟槽数量的增加,气膜刚度逐渐增加,但渗漏和渗漏刚度比降低。结果还表明,随着槽深的增加,气膜刚度有一个最大值,而泄漏量则有一个最小值。该研究在指导圆筒形气密封的设计和应用方面起着重要的作用。

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