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Performance Analysis of Hydrodynamic Finger Seal with Herringbone-Grooved Structure

机译:具有人字形沟槽结构的流体动力手指密封的性能分析

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Three dimensional solid-fluid interaction numerical analysis models of both the finger seal with herringbone-grooved pad and the finger seal with herringbone-grooved rotor were established in order to study the performance of hydrodynamic finger seal. The models investigated fluid radial under pad force and fluid leakage as a function of both the rotor speed and the high- to low-pressure differential. It was shown that the finger seal with herringbone-grooved structure in pad or in rotor could bring lift force under the finger pad so as to keep the finger seal in non-contacting status. For the two types of finger seal, their load carrying ability and fluid leakage varying with the pressure differential were almost same. In the same velocity of rotor surface, the load carrying capacity of the finger seal with herringbone- grooved rotor was greater and the leakage was less than that of the finger seal with herringbone-grooved pad respectively. With the conditions of rotor structure allowing, it is suggested to select the finger seal with herringbone-grooved rotor first for designing the hydrodynamic finger seal with herringbone-grooved structure.
机译:建立了三维固体流体相互作用的数值分析,手指密封与人字带沟槽垫和手指密封具有人滚槽沟槽转子的手指密封,以研究流体动力手指密封的性能。根据转子速度和高压到低压差分,模型在焊盘力和流体泄漏下调查了焊盘力和流体泄漏。结果表明,在垫或转子中具有人流管沟槽结构的手指密封可以在手指垫下带来升力,以便将手指密封保持在非接触状态下。对于两种类型的手指密封,与压差变化的负载承载能力和流体泄漏几乎相同。在转子表面的相同速度中,手指密封与人字带沟槽转子的承载能力更大,并且泄漏分别小于手指沟槽垫的手指密封的泄漏。与转子结构允许的条件下,建议选择手指密封与人字形开槽转子第一设计液力手指密封与人字形槽结构。

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