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Interaction of gusts and forest edges - an experimental wind-tunnel study.

机译:阵风和森林边缘的相互作用-实验风洞研究。

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Observations in nature suggest a particularly high risk of wind-induced forest damage near stand edges. Unsteady processes caused by strong gusts from the atmospheric boundary layer are likely to play a major role. To gain more insight into the corresponding flow behaviour, wind-tunnel experiments were made with artificially generated 3D wind gusts, produced by short inductions of pressurized air, combined with time-resolved particle-image velocimetry measurements. In the near-edge region of the laboratory forest, the developing gust-induced disturbance at canopy, the top shows a wave-like shape in the measurement planes. The highest values of downward momentum flux above the canopy were measured 1.5 to 4 tree heights behind the leading edge. This was found to be caused by an edge-induced primary vortex, which formed behind the edge and directed high momentum fluid from the overflowing gust into the canopy.
机译:自然界的观察结果表明,林分边缘附近风生森林破坏的风险特别高。来自大气边界层的强阵风引起的不稳定过程可能起主要作用。为了更深入地了解相应的流动行为,使用人工产生的3D阵风进行了风洞实验,该阵风是由压缩空气的短时间感应产生的,并结合了时间分辨的粒子图像测速仪测量。在实验室森林的近缘区域,由于阵风引起的冠层扰动不断加剧,顶部在测量平面上呈波状。在前缘后1.5至4树高处测量到了顶篷上方的向下动量通量的最大值。发现这是由边缘引起的初级涡流引起的,该初级涡流在边缘后面形成,并将高动量流体从溢出的阵风引导到机盖中。

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