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Simulation of Turbulent Flow in An Urban Forested Park Damaged by a Windstorm

机译:暴风雨破坏的城市森林公园湍流模拟

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The damage caused by windstorms to forest ecosystems is often very heterogeneous. In order to improve the stability of forested landscapes, it is of great importance to identify the factors responsible for this spatial variability. The structure of the landscape itself may play a role, through possible influences of canopy heterogeneities on the development of turbulence. For the purpose of investigating the role of landscape fragmentation on turbulence development, we used a numerical flow model with a k–ε turbulence scheme model, previously validated in simple cases with well-defined surface changes (roughness change and forest edge flow). A series of two- and three-dimensional simulations were performed over a heterogeneous urban forested park in Europe, which was severely damaged in various places by the Lothar windstorm in December 1999. The model shows the development of a region of strong turbulence, resulting from the generation of large wind shear at the top of the canopy. A sensitivity study shows how the location, extension and intensity of the region depend on canopy characteristics such as the leaf density, the nature of the edge or the presence of gaps and clearings. Simulations performed in conditions representative of the windstorm show that the location of the damaged areas corresponds very closely to the regions where the turbulent kinetic energy was above a certain threshold.
机译:暴风雨对森林生态系统的破坏通常是非常不同的。为了提高森林景观的稳定性,识别造成这种空间变异性的因素非常重要。通过冠层异质性对湍流发展的可能影响,景观本身的结构可能会发挥作用。为了研究景观破碎化在湍流发展中的作用,我们使用了具有k–ε湍流方案模型的数值流模型,该模型先前在具有明确定义的表面变化(粗糙度变化和森林边缘流)的简单情况下得到了验证。在欧洲的一个异类城市森林公园上进行了一系列的二维和三维模拟,该公园在1999年12月的洛萨(Lothar)暴风雨中在各个地方受到了严重破坏。该模型显示了由在树冠顶部产生大的风切变。一项敏感性研究表明,该区域的位置,延伸范围和强度如何取决于冠层特性,例如叶片密度,边缘的性质或是否存在间隙和空隙。在代表暴风雨的条件下进行的模拟表明,受损区域的位置非常接近湍动能高于某个阈值的区域。

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