首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >VALIDATION OF RANS TURBULENCE MODELS FOR LABYRINTH SEAL FLOWS BY MEANS OF PARTICLE IMAGE VELOCIMETRY
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VALIDATION OF RANS TURBULENCE MODELS FOR LABYRINTH SEAL FLOWS BY MEANS OF PARTICLE IMAGE VELOCIMETRY

机译:通过粒子图像速度验证迷宫式密封流的RAN湍流模型

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Accurate prediction of labyrinth seal flows is important for the design and optimisation of turbomachinery. However, the prediction of such flows with RANS turbulence models is still lacking. The identification of modelling deficits and the development of improved turbulence models requires detailed experimental data. Consequently, a new test rig for straight labyrinth seals was built at the Institute for Turbomachinery and Fluid Dynamics which allows for non-intrusive measurements of the three dimensional velocity field in the cavities. Two linear eddy viscosity models and one algebraic Reynolds stress turbulence model have been tested and validated against global parameters, local pressure measurements, and non-intrusive measurements of the velocity field. While some models accurately predict the discharge coefficient, large local errors occurred in the prediction of the wall static pressure in the seal. Although improved predictions were possible by using model extensions, significant errors in the prediction of vortex systems remained in the solution. These were identified with the help of PIV results. All turbulence models struggled to accurately predict the size of separations and the swirl imposed by viscous effects at the rotor surface. Additionally, the expansion of the leakage jet in the outlet cavity is not modelled correctly by the numerical models. This is caused by a wrong prediction of turbulent kinetic energy and, presumably, its rate of dissipation.
机译:精确的迷宫式密封流预测对涡轮机的设计和优化非常重要。然而,仍然缺乏对rans湍流模型的这种流动的预测。识别建模缺陷和改进的湍流模型的发展需要详细的实验数据。因此,在涡轮机械和流体动力学研究所建立了一种用于直迷宫密封件的新试验台,其允许空腔中的三维速度场的非侵入性测量。已经测试了两个线性涡粘度模型和一个代数雷诺应力湍流模型,并验证了全局参数,局部压力测量和速度场的非侵入性测量。虽然某些模型精确地预测放电系数,但在密封件中的壁静压预测中发生了大的局部误差。尽管通过使用模型扩展可以改进预测,但是在解决方案中仍然存在预测的预测中的显着误差。这些是在PIV结果的帮助下鉴定出来的。所有湍流模型都努力准确地预测分离的尺寸和转子表面粘性效果施加的旋涡。另外,出口腔中的泄漏射流的膨胀不会被数值模型正确建模。这是由湍流动能的错误预测引起的,并且可能是其耗散速率。

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