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Experimental measurement of phase averaged wall-pressure distributions for a 25 eccentric whirling annular seal

机译:25%偏心回旋环形密封件的相位平均壁压分布的实验测量

摘要

Instantaneous wall-pressure data were recorded for a 25% eccentric whirling annular seal for rotor speeds of 1800RPM and 3600RPM, axial Reynolds numbers of 24000 and 12000, and whirl ratios of 0.1-1.0 following the procedure set forth by Winslow (1994), Robic (1999) and Suryanarayanan (2003). Overall, the phase averaged wall-pressure distributions were consistent with previous results. The ??switch?? in the pressure distribution measured by Suryanarayanan (2003) and Robic (1999) from pressure to suction between the seal entrance and exit occurs at and above a whirl ratio of 0.7 for 1800RPM and 0.4 for 3600RPM. For both rotor speeds, decreasing the flow rate by one-half also decreases the wall pressure fluctuation distributions by one-half. For whirl ratios less than 0.5, the phase averaged pressure field was relatively constant which leads to minimal forces being imparted on the rotor by the fluid in the annulus. Talyor-Gortler vortices are measured for 1800RPM and Re=24000 at whirl ratios 0.1 and 0.3-0.7. As the whirl ratio increases past 0.5, longitudinal vortices begin to emerge in the pressure contours and skew axially with 180?? shifts occurring when the Taylor-Reynolds ratio is large enough. Longitudinal vortices were measured for both rotor speeds when the whirling motion is greater than 1400RPM for Re=12000 and greater than 1600RPM for Re=24000. Attempts were made to apply Childs (1983) procedure for finding the rotordynamic coefficients of annular seals; however, the seal moves in a non-circular orbit about the seal??s center so Childs analysis cannot be applied.
机译:根据Winslow(1994)(Robic)设定的程序,记录了25%偏心回旋环形密封件的瞬时壁压数据,转子转速为1800RPM和3600RPM,轴向雷诺数为24000和12000,旋转比为0.1-1.0。 (1999)和Suryanarayanan(2003)。总体而言,相平均壁压分布与先前的结果一致。开关?? Suryanarayanan(2003)和Robic(1999)在密封入口和出口之间的压力到吸力的压力分布中,在1800RPM和0.7RPM的旋转比分别为0.7和0.4时发生。对于两种转子速度,将流量减少一半也将壁压力波动分布减少一半。对于小于0.5的涡流比,相平均压力场是相对恒定的,这导致环形空间中的流体在转子上施加的力最小。在旋转比为0.1和0.3-0.7的情况下,测量了1800RPM和Re = 24000的Talyor-Gortler涡旋。当涡流比增加到0.5以上时,纵向涡旋开始出现在压力轮廓中,并在180°轴向倾斜。当泰勒-雷诺兹比足够大时会发生偏移。当旋转运动对于Re = 12000大于1400RPM而对于Re = 24000大于1600RPM时,测量两种转子速度的纵向涡旋。尝试应用Childs(1983)程序找到环形密封件的转子动力学系数。但是,海豹绕着海豹的中心在非圆形轨道上运动,因此无法应用柴尔德斯分析。

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    Cusano Domenic;

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  • 年度 2006
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