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UNSTEADY FLOW DYNAMICS WITHIN AN INERTIAL PARTICLE SEPARATOR

机译:惰性颗粒分离器内的非定常流动动力学

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Inertial Particle Separators are utilized in the inlet of a gas turbine engine to remove a significant fraction of the damaging sand and dust particulate ingested by the engine. In gas turbine propulsion applications these devices have pressure loss, space claim, and maintainability characteristics that are more favorable than other types of particle separating devices. Maximizing the particle separation efficient of such devices is the subject of continuing importance. A more complete understanding of the underlying fluid and particulate flow mechanisms present has been undertaken. This study focuses on the how particulate is affected by the unsteady flow dynamics within the inertial particle separator (IPS). The work utilized a particle separator test rig with flow path scale and airflow velocities relevant to that used in current production designs. The techniques of surface flow visualization, net separation efficiency measurement, specific geometry changes, traditional Particle Image Velocimetry (PIV), Multi-Phase PIV (MP-PIV), and high speed video were each applied to examine the fundamental flow physics of the fluid flow field and the particle motion created by the IPS geometries.
机译:惯性颗粒分离器用于燃气涡轮发动机的进气口,以去除发动机吸入的相当一部分有害的沙子和灰尘颗粒。在燃气轮机推进应用中,这些装置具有比其他类型的颗粒分离装置更有利的压力损失,空间要求和可维护性特征。使这种装置的颗粒分离效率最大化是持续重要的主题。已经对存在的潜在的流体和颗粒流动机理进行了更完整的理解。这项研究的重点是惯性粒子分离器(IPS)内的非稳态流动动力学如何影响颗粒。这项工作使用了颗粒分离器试验台,其流动路径比例和气流速度与当前生产设计中使用的速度有关。表面流可视化,净分离效率测量,特定几何形状变化,传统粒子图像测速技术(PIV),多相PIV(MP-PIV)和高速视频技术均用于检查流体的基本流物理学IPS几何形状产生的流场和粒子运动。

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