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Theoretical and Experimental Investigation on Tip Forces and Temperature Distributions of the Brush Seal Coupled Aerodynamic Force

机译:毛刷密封件空气动力的叶尖力和温度分布的理论和实验研究

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摘要

Based on a type of three-dimensional slice model of a brush seal combined with the commercial CFD software FLUENT, the study calculated the leakage flow of the brush seal. The aerodynamic forces applied on upstream and downstream bristles are analyzed and reduced to a smaller amount of point forces for analysis convenience. The frictional coefficient between the bristle material Haynes 25 and rotor material 1Cr14Mn14Ni are tested. Tip forces including normal reaction and frictional forces caused by aerodynamic forces are quantitatively investigated under conditions with and without frictions using the torque balance principle and nonlinear beam theory (by ansys simulations), respectively. Torques, frictional heats, and the temperature distributions of the rotor and bristle pack are studied further. Details and characteristics of the flow and temperature distribu- . Tions inside the bristle pack are presented. In the experiments, besides traditional tests, such as leakage and torque tests, an infrared camera is employed to capture temperature distributions at the interface of the rotor, bristle pack and nearby zones under various pressure differentials and rotation speeds. The three-dimensional slice model is firstly verified by calculating the leakages, torques and temperature distributions of the brush seal and confirmed via experimentation. The influence of various frictional coefficients and pressure differentials on tip forces, torque and temperature distributions are also examined.
机译:基于刷密封件的一种三维切片模型,结合商用CFD软件FLUENT,该研究计算了刷密封件的泄漏流量。为了方便分析,分析了施加在上游和下游刷毛上的空气动力,并将其减小为较小的点力。测试了刷毛材料Haynes 25与转子材料1Cr14Mn14Ni之间的摩擦系数。分别使用转矩平衡原理和非线性梁理论(通过ansys仿真)对在有摩擦和无摩擦条件下的包括正常反作用力和由空气动力引起的摩擦力的叶尖力进行了定量研究。进一步研究了转子,刷毛组件的扭矩,摩擦热以及温度分布。流量和温度分布的细节和特征。显示了硬毛包装内的张力。在实验中,除了诸如泄漏和扭矩测试之类的传统测试之外,还采用了红外热像仪来捕获在各种压力差和转速下转子,刷毛束和附近区域的界面处的温度分布。首先通过计算电刷密封件的泄漏量,扭矩和温度分布来验证三维切片模型,并通过实验进行确认。还检查了各种摩擦系数和压力差对叶尖力,扭矩和温度分布的影响。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2014年第5期|052502.1-052502.12|共12页
  • 作者单位

    State Key Laboratory of Tribology, Tsinghua University, Beijing 100084, China;

    State Key Laboratory of Tribology, Tsinghua University, Beijing 100084, China;

    State Key Laboratory of Tribology, Tsinghua University, Beijing 100084, China;

    State Key Laboratory of Tribology, Tsinghua University, Beijing 100084, China;

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