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Experimental study of the flow field inside a whirling annular seal

机译:旋转环形密封内部流场的实验研究。

摘要

The flow field inside a whirling annular seal was measured using a 3-D Laser Doppler Anemometer (LDA) system. The seal investigated has a clearance of 1.27 mm, a length of 37.3 mm, and is mounted on a drive shaft with a 50 percent eccentricity ratio. This results in the rotor whirling at the same speed as the shaft rotation (whirl ratio = 1.0). The seal is operated at Reynolds number of 12,000 and a Taylor number of 6,300 (3,600 rpm). The 3-D LDA system is equipped with a rotary encoding system which is used to produce phase averaged measurements of the entire mean velocity vector field and Reynolds stress tensor field from 0.13 mm upstream to 0.13 mm downstream of the seal. The mean velocity field reveals a highly three dimensional flow field with large radial velocities near the inlet of the seal as well as a recirculation zone on the rotor surface. The location of maximum mean axial velocity migrates from the pressure side of the rotor at the inlet to the suction side at turbulence kinetic energy. However, turbulence production and dissipation attain equilibrium fairly quickly with remaining relatively constant over the last half of the seal.
机译:使用3-D激光多普勒风速计(LDA)系统测量旋转的环形密封件内部的流场。所研究的密封件的间隙为1.27毫米,长度为37.3毫米,并以50%的偏心率安装在驱动轴上。这导致转子以与轴旋转相同的速度旋转(旋转比= 1.0)。密封件的雷诺数为12,000,泰勒数为6,300(3,600 rpm)。 3-D LDA系统配备了旋转编码系统,该系统用于对密封件上游0.13 mm至下游0.13 mm的整个平均速度矢量场和雷诺应力张量场进行相位平均测量。平均速度场显示了一个高三维流场,在密封件的入口附近以及转子表面上的回流区都具有较大的径向速度。最大平均轴向速度的位置以湍动能从入口处的转子压力侧迁移到吸入侧。但是,湍流的产生和耗散相当快地达到平衡,并且在密封件的后半部分保持相对恒定。

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