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The Impact of Source Distribution on Scalar Transport over Forested Hills

机译:源分布对森林丘陵标量运输的影响

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Numerical simulations of neutral flow over a two-dimensional, isolated, forested ridge are conducted to study the effects of scalar source distribution on scalar concentrations and fluxes over forested hills. Three different constant-flux sources are considered that span a range of idealized but ecologically important source distributions: a source at the ground, one uniformly distributed through the canopy, and one decaying with depth in the canopy. A fourth source type, where the in-canopy source depends on both the wind speed and the difference in concentration between the canopy and a reference concentration on the leaf, designed to mimic deposition, is also considered. The simulations show that the topographically-induced perturbations to the scalar concentration and fluxes are quantitatively dependent on the source distribution. The net impact is a balance of different processes affecting both advection and turbulent mixing, and can be significant even for moderate topography. Sources that have significant input in the deep canopy or at the ground exhibit a larger magnitude advection and turbulent flux-divergence terms in the canopy. The flows have identical velocity fields and so the differences are entirely due to the different tracer concentration fields resulting from the different source distributions. These in-canopy differences lead to larger spatial variations in above-canopy scalar fluxes for sources near the ground compared to cases where the source is predominantly located near the canopy top. Sensitivity tests show that the most significant impacts are often seen near to or slightly downstream of the flow separation or reattachment points within the canopy flow. The qualitative similarities to previous studies using periodic hills suggest that important processes occurring over isolated and periodic hills are not fundamentally different. The work has important implications for the interpretation of flux measurements over forests, even in relatively gentle terrain and for neutral flow. To understand fully such measurements it is necessary not only to understand the flow structure (given the site characteristics) but also to know the distribution of scalar sources and sinks in the canopy.
机译:进行了二维隔离的森林小岭上中性水流的数值模拟,以研究标量源分布对森林丘陵上标量浓度和通量的影响。考虑了三种不同的恒定通量源,它们跨越了一系列理想但具有生态重要性的源分布:地面源,一个均匀分布在冠层中的源和一个随冠层深度而衰减的源。还考虑了第四种源类型,其中,树冠内源取决于风速以及树冠上的浓度与叶子上的参考浓度之间的浓度差(旨在模拟沉积)。模拟表明,地形引起的对标量浓度和通量的扰动在数量上取决于源分布。净影响是影响对流和湍流混合的不同过程的平衡,即使对于中等地形也可能非常重要。在深层冠层或地面有大量输入的源在冠层中表现出较大的对流和湍流通量散度项。流动具有相同的速度场,因此差异完全是由于源分布不同而导致的示踪剂浓度场不同。与源主要位于冠层顶部附近的情况相比,这些冠层内差异导致靠近地面的源的冠层上标量通量的空间变化更大。敏感性测试表明,最明显的影响通常是在冠层流内的流分离或重新连接点附近或稍稍下游看到的。与以前使用周期性山丘的研究在质量上的相似性表明,在孤立和周期性山丘上发生的重要过程并没有根本不同。这项工作对于解释森林上的通量测量结果(即使在相对平缓的地形中)和中性流动也具有重要意义。要完全了解此类测量,不仅需要了解流量结构(根据现场特征),而且还需要了解树冠中标量源和汇的分布。

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