首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Effects of roughness blocks on atmospheric boundary layer flow over a two-dimensional low hill with/without sudden roughness change
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Effects of roughness blocks on atmospheric boundary layer flow over a two-dimensional low hill with/without sudden roughness change

机译:粗糙度块在有/无突变的情况下对二维低丘上大气边界层流动的影响

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Wind tunnel experiments were carried out to investigate the effects of roughness blocks on the atmospheric boundary layer flow over a two-dimensional low hill with maximum slope 0.21. Roughness blocks whose heights were one eighth of the hill height were arranged in a staggered pattern with a roughness density of 4.1% to model the rough conditions. Four situations with/without roughness change in the flow direction, i.e. a smooth hill in smooth flow, a rough hill in rough flow, a smooth hill in rough flow and a rough hill in smooth flow, were considered. The effects of the roughness blocks were clarified by comparing the flow characteristics over hill models, with emphasis on speedup ratio and turbulence structure. Experimental results were compared with the predictions obtained from linear models. The results show that speedup ratio depends strongly on the surface condition in the middle layer, the inviscid but rotational part of the outer layer defined by HLR theory [Hunt, J.C.R., Leibovich, S., Richards, K.J., 1988. Turbulent shear flow over low hills. Quart. J. Roy. Meteorol. Soc. 114, 1435–1471]. Adding or removing roughness blocks on the hill surface or inflow area changes the velocity deficit and creates a completely different turbulence structure in the wake.
机译:进行风洞实验以研究粗糙度块对最大坡度为0.21的二维低丘上大气边界层流的影响。高度为山高的八分之一的粗糙度块以交错模式排列,粗糙度密度为4.1%,以模拟粗糙条件。考虑了在流动方向上具有/不具有粗糙度变化的四种情况,即,在顺畅流动中为光滑的小山,在顺畅流动中为粗糙的小山,在顺畅流动中为光滑的小山,在顺畅流动中为粗糙的小山。通过比较丘陵模型的流动特性,重点说明了加速比和湍流结构,从而弄清了粗糙度块的影响。将实验结果与线性模型的预测结果进行了比较。结果表明,加速比在很大程度上取决于中间层的表面状况,而外层是由HLR理论定义的外层的无粘性但旋转的部分[Hunt,JCR,Leibovich,S.,Richards,KJ,1988。低丘陵。夸脱。罗伊陨石Soc。 114,1435–1471]。在山丘表面或流入区域添加或去除粗糙度块会改变速度赤字,并在尾流中形成完全不同的湍流结构。

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