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NUMERICAL INVESTIGATIONS ON THE SEALING EFFECTIVENESS OF TURBINE GROOVE RADIAL RIM SEAL

机译:涡轮槽径向RIM密封效果的数值研究。

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This paper presents a numerical comparison of sealing performance between conventional radial rim seal and seven different kinds of groove radial rim seal with three coolant flow rates. Three-dimensional unsteady Reynolds-Averaged Navier-Stokes (URANS) equations, coupled with a fully developed shear stress transport (SST) turbulent model from ANSYS-CFX, are utilized to investigate the sealing effectiveness of rim seal and flow characteristics in the wheel-space cavity of gas turbines. The numerical method for the pressure distributions on the vane hub and sealing effectiveness of rim seal is validated on the basis of published experimental data. The seven kinds of groove rim seals designed in this work include four circumferential groove structures, one axial groove structure and two oblique groove structures. The sealing effectiveness of conventional and seven different groove rim seals are compared. Then the flow field in the disc cavity of conventional and groove rim seals is simulated and analyzed. Compared with conventional radial rim seal, the groove rim seals can increase the sealing effectiveness obviously. It is shown that the groove structures improve the damping dissipation of invading gas. The number of grooves has an obvious effect on sealing effectiveness of circumferential groove rim seals. The axial groove case results in less minimum sealing flow rate than oblique groove cases. In addition, the flow pattern of rim seal and disc cavity is used to describe rim seal gas ingestion flow characteristics.
机译:本文介绍了常规径向轮辋密封件与三种冷却剂流量的七种不同类型的沟槽径向轮辋密封件之间的密封性能的数值比较。利用三维非定常的雷诺平均Navier-Stokes(URANS)方程,再结合ANSYS-CFX全面开发的剪切应力传递(SST)湍流模型,来研究轮辋密封的密封效果和流动特性。燃气轮机的空间腔。根据公开的实验数据验证了叶片轮毂上压力分布和轮辋密封件密封效果的数值方法。本工作设计的七种沟槽轮缘密封件包括四个周向沟槽结构,一个轴向沟槽结构和两个倾斜沟槽结构。比较了常规密封圈和七个不同的沟槽轮辋密封圈的密封效果。然后,对常规密封圈和沟槽密封圈的盘腔内的流场进行了仿真和分析。与常规径向轮辋密封件相比,沟槽轮辋密封件可以明显提高密封效果。结果表明,沟槽结构改善了侵入气体的阻尼耗散。沟槽的数量对周向沟槽轮辋密封件的密封效果具有明显的影响。与斜槽相比,轴向槽情况下的最小密封流量较小。另外,轮辋密封件和盘腔的流动模式用于描述轮辋密封件的气体吸入流动特性。

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