首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Unsteady measurement of core penetration flow caused by rotating geometric non-axisymmetry in a turbine rotor-stator disc cavity
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Unsteady measurement of core penetration flow caused by rotating geometric non-axisymmetry in a turbine rotor-stator disc cavity

机译:在涡轮转子 - 定子盘空腔中旋转几何非轴对称引起的芯穿透流量的不稳定测量

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摘要

The existence and causes of the deep ingress into the core region of a turbine rotor-stator disc cavity, or core penetration flow, generated by a rotating non-axisymmetric geometry have been investigated experimentally. In a low-speed, low-expansion ratio, single-stage, cold turbine test facility, time-resolved tangential and radial velocities in the cavity have been measured with 2-D hot-wire anemometers. In addition, time-resolved static pressures on the stator disc have been measured with fast response pressure transducers, and unsteady cavity velocity field in the absolute frame has been measured using Particle Image Velocimetry (PIV). Rotating geometric non-axisymmetry leads to an unsteady radial pressure gradient in the disc cavity. A time lag in the tangential velocity adjustment to the variation in the radial pressure gradient results in a net radial force, causing core penetration flow. A first-harmonic rotating geometric non-axisymmetry makes the core penetration flow to occur three times per revolution (twice when the cavity exit pressure increases and once when the cavity exit pressure decreases) and to revolve at the disc's rotational speed. Core penetration flow due to the rotating geometric asymmetry is not affected by variations in the annulus flow coefficient or rotational Reynolds number but is weakened by increasing purge air flow rate.
机译:通过实验研究了由旋转非轴对称几何形状产生的涡轮转子 - 定子盘腔的深入进入的核心区域的存在和原因。以低速,低膨胀比,单级,冷涡轮机测试设施,用2-D热线风化计测量腔中的时间分离的切向和径向速度。另外,已经用快速响应压力换能器测量定子盘上的时间分辨静压,并且使用粒子图像速度(PIV)测量绝对帧中的不稳定腔速度。旋转几何非轴对称导致盘腔中的不稳定径向压力梯度。在径向压力梯度的变化下的切向速度调节的时间滞后导致净径向力,导致芯渗透流。第一次谐波旋转几何非轴对称使芯穿透流动发生三次(当腔出出的压力增加两次,并且当腔出出的压力降低)并且以盘的转速旋转。由于旋转几何不对称引起的芯渗透流不受环流量系数或旋转雷诺数的变化的影响,而是通过增加吹扫空气流速来削弱。

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