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Experimental Study on Effects of Ground Roughness on Flow Characteristics of Tornado-Like Vortices

机译:地面粗糙度对龙卷风涡流流动特性的实验研究

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The three-dimensional wind velocity and dynamic pressure for stationary tornado-like vortices that developed over ground of different roughness categories were investigated to clarify the effects of ground roughness. Measurements were performed for various roughness categories and two swirl ratios. Variations of the vertical and horizontal distributions of velocity and pressure with roughness are presented, with the results showing that the tangential, radial, and axial velocity components increase inside the vortex core near the ground under rough surface conditions. Meanwhile, clearly decreased tangential components are found outside the core radius at low elevations. The high axial velocity inside the vortex core over rough ground surface indicates that roughness produces an effect similar to a reduced swirl ratio. In addition, the pressure drop accompanying a tornado is more significant at elevations closer to the ground under rough compared with smooth surface conditions. We show that the variations of the flow characteristics with roughness are dependent on the vortex-generating mechanism, indicating the need for appropriate modelling of tornado-like vortices.
机译:研究了在不同粗糙度类别的地面上开发的固定龙卷风类似涡流的三维风速和动力压力,阐明了地面粗糙度的影响。针对各种粗糙度类别和两个旋流比进行测量。呈现速度和水平分布的速度和水平分布的变化,结果表明,切向,径向和轴向速度分量在粗糙表面条件下在地面附近的涡旋芯内增加。同时,在低升高的核心半径之外发现了明显减少的切向组分。在粗糙地面上涡旋芯内的高轴向速度表明粗糙度产生类似于降低的涡流比的效果。此外,与平滑表面条件相比,伴随龙卷风的压力下降在粗糙度下更接近地面的高度。我们表明,具有粗糙度的流动特性的变化取决于涡流产生机制,表明需要适当建模的龙卷风状涡流。

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