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Influence of combined radial location and growth on the leakage performance of a rotating labyrinth gas turbine seal

机译:径向位置和生长组合对旋转迷宫式燃气轮机密封件泄漏性能的影响

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摘要

Leakage characteristics, influenced by centrifugal and thermal radial growth are determined computationally for a generic rotating labyrinth seal used in the gas turbine secondary air system. Three seal locations, namely, R25, R50 and R75 are represented by means of varying the rotor radius mimicking different radial positions of the seal from the shaft axis. The combined influence of seal location and its radial (Centrifugal and thermal) growth on the leakage performance is investigated for a wide-ranging speeds from 1000 to 3000 rad/s, temperatures ranging from 200 to 450 A degrees C and pressure ratios varying from 1.1 to 2.5, for a chosen initial clearance of 500 micron. A comparison of the effect of rotation and temperature gradient among different rotors shows that the radial growth and leakage flow rates significantly vary with the increasing radius.
机译:对于燃气轮机二次空气系统中使用的通用旋转迷宫式密封,通过计算确定了受离心力和径向热增长影响的泄漏特性。通过改变转子半径来模拟三个密封位置,即R25,R50和R75,以模仿密封件相对于轴轴线的不同径向位置。在1000至3000 rad / s的宽范围速度,200至450 A的温度范围和1.1的压力比范围内,研究了密封位置及其径向(离心和热)增长对泄漏性能的综合影响。至2.5,选择的初始间隙为500微米。比较不同转子之间的旋转和温度梯度的影响,可以发现径向增长和泄漏流量随半径的增加而显着变化。

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