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Eccentricity effects upon the flow field inside a whirling annular seal

机译:偏心率对旋转环形密封内部的流场产生影响

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摘要

The flow field inside a whirling annular seal operating at a Reynolds number of 24,000 and a Taylor number of 6600 has been measured using a 3-D laser Doppler anemometer system. Two eccentricity ratios were considered, 0.10 and 0.50. The seal has a diameter of 164 mm, is 37.3 mm long, and has a clearance of 1.27 mm. The rotor was mounted eccentrically on the shaft such that the whirl ratio is 1.0 and the rotor follows a circular orbit. The mean axial velocity is not uniform around the circumference of the seal; near the inlet a region characterized by high velocity of the seal. By the exit, another region of high axial velocity is not uniform around the circumference of the seal; near the inlet a region characterized by high velocity of the seal. By the exit, another region of high axial velocity has developed, this time on the suction side of the seal. The magnitude and azimuthal distance of the migration increased with increasing whirl amplitude (eccentricity). Throughout the seal length, the azimuthal mean velocity varied inversely with the mean axial velocity. Increasing the whirl amplitude did not increase the magnitude of the azimuthal velocity at the seal exit.
机译:使用3-D激光多普勒风速计系统测量了在24,000雷诺数和6600泰勒数的旋转环形密封内部的流场。考虑了两个偏心率比:0.10和0.50。密封件的直径为164毫米,长37.3毫米,间隙为1.27毫米。转子偏心地安装在轴上,以使涡流比为1.0,并且转子遵循圆形轨道。平均轴向速度在密封件的圆周上不一致。在入口附近有一个特点是密封速度高的区域。在出口处,另一个高轴向速度的区域在密封件的周围不均匀;在入口附近有一个特点是密封速度高的区域。通过出口,形成了另一个高轴向速度的区域,这次是在密封件的吸入侧。迁移的幅度和方位距离随着涡旋幅度(离心率)的增加而增加。在整个密封长度中,方位角平均速度与平均轴向速度成反比。增加旋涡幅度不会增加密封出口处的方位角速度幅度。

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