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INVESTIGATION OF AUGMENTED ANGEL WING SEALING THROUGH THE USE OF SURFACE CONCAVITY ARRAYS

机译:通过使用表面凹形阵对增强型天使之翼进行密封的研究

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A simple rotor-stator disk experiment is used to investigate the enhancement in rim sealing effectiveness due to a surface treatment applied to the angel wings on either the rotor or stator. Angel wings in rim seals are also commonly referred to as seal teeth or flow discouragers. In the present study, arrays of hemispherical concavities, also known as dimples, have been placed in the surfaces of a single overlapping angel wing set at the outer radius of the rotor-stator system. Stator surface static pressure measurements are used to quantify the degree of external air ingestion into the disk cavity. Tests were run at a single rotational Reynolds number of 1,45e6 and 4500 rpm. The nominal radial clearance gap was 1.5 mm. Three axial engagement positions of the angel wings were tested. The non-dimensional purge flow rate C_w ranged from 3500 to 10000. Addition of a concavity array surface treatment on the rotor angel wing had negligible effect on the sealing capability for the rotor-stator seal system. However, test results indicate an increase in seal effectiveness of nearly 20% due to the presence of the concavity array surface on the stator angel wing. Through other known concavity flow physics, it is conjectured that the ejected organized vortical flows from the concavities create an effective fluid resistance in the radial seal gap that decreases the ingestion flow rate.
机译:一个简单的转子-定子盘实验用于研究由于对转子或定子上的天使翼进行了表面处理而导致的轮辋密封效果的提高。轮缘密封件中的天使翼通常也称为密封齿或阻流器。在本研究中,半球形凹坑(也称为凹坑)的阵列已放置在转子定子系统外半径处的单个重叠天使翼的表面中。定子表面静压测量值用于量化吸入盘腔中的外部空气的程度。测试以1,45e6和4500 rpm的单个旋转雷诺数进行。标称径向间隙为1.5毫米。测试了天使翼的三个轴向啮合位置。无量纲清洗流量C_w在3500到10000之间。在转子天使翼上加装凹面阵列表面处理对转子-定子密封系统的密封性能影响可忽略不计。但是,测试结果表明,由于定子天使机翼上存在凹面阵列表面,密封效率提高了近20%。通过其他已知的凹面流动物理学,可以推测,从凹面喷射的有组织的涡流在径向密封间隙中产生有效的流体阻力,从而降低了摄入流量。

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