首页> 外文会议>ASME joint US-European Fluids Engineering Division summer meeting >PARTICLE IMAGE VELOCIMETRY MEASUREMENTS OF TORNADO-LIKE FLOW FIELD IN MODEL WINDEEE DOME
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PARTICLE IMAGE VELOCIMETRY MEASUREMENTS OF TORNADO-LIKE FLOW FIELD IN MODEL WINDEEE DOME

机译:模型温迪球罩中像龙卷风一样的流场的颗粒图像比色法测量

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The flow field of tornado vortices simulated in the 1/11 scaled model of the Wind Engineering, Energy and Environment (WindEEE) Dome is characterized. Particle Image Velocimetry measurements were performed to investigate the flow dynamics for a wide range of Swirl ratios (0.12≤S≤1.29) and at various heights above the surface. It is shown that this simulator is capable of generating a wide variety of tornado-like vortices ranging from a single-celled laminar vortex to a multi-celled turbulent vortex. Radial profiles of the tangential velocity demonstrated a clear variation in the experimental values with height at and after the touch-down of the breakdown bubble. Also, the comparison between experimental tangential velocities and the Rankine model estimations resulted in good agreement at only the upper levels (Z>0.35). Radial velocity values close to the surface rose as the swirl increased which is mainly due to the intensified tangential velocities in that region. In addition, variation of the radial velocity with height is more noticeable for higher swirls which can be explained by the flow regime being fully turbulent for S> 0.57.
机译:对风工程,能源与环境(WindEEE)圆顶的1/11比例模型中模拟的龙卷风涡流的流场进行了表征。进行了颗粒图像测速仪测量,以研究大范围旋流比(0.12≤S≤1.29)以及表面上方各种高度的流动动力学。结果表明,该模拟器能够产生从单细胞层流涡旋到多细胞湍流涡旋的各种龙卷风状涡流。切向速度的径向轮廓表明,击穿气泡触及后和触及高度后,实验值随高度发生明显变化。同样,实验切向速度与朗肯模型估计值之间的比较也仅在较高水平(Z> 0.35)上产生了良好的一致性。随着涡旋的增加,靠近表面的径向速度值上升,这主要是由于该区域切线速度的增强。此外,对于更高的旋流,径向速度随高度的变化更为明显,这可以用S> 0.57的完全湍流的流动状态来解释。

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