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Mean and Turbulent Flow Statistics in a Trellised Agricultural Canopy

机译:板式农业冠层的均值和湍流统计

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Flow physics is investigated in a two-dimensional trellised agricultural canopy to examine that architecture's unique signature on turbulent transport. Analysis of meteorological data from an Oregon vineyard demonstrates that the canopy strongly influences the flow by channelling the mean flow into the vine-row direction regardless of the above-canopy wind direction. Additionally, other flow statistics in the canopy sub-layer show a dependance on the difference between the above-canopy wind direction and the vine-row direction. This includes an increase in the canopy displacement height and a decrease in the canopy-top shear length scale as the above-canopy flow rotates from row-parallel towards row-orthogonal. Distinct wind-direction-based variations are also observed in the components of the stress tensor, turbulent kinetic energy budget, and the energy spectra. Although spectral results suggest that sonic anemometry is insufficient for resolving all of the important scales of motion within the canopy, the energy spectra peaks still exhibit dependencies on the canopy and the wind direction. These variations demonstrate that the trellised-canopy's effect on the flow during periods when the flow is row-aligned is similar to that seen by sparse canopies, and during periods when the flow is row-orthogonal, the effect is similar to that seen by dense canopies.
机译:在二维带状的农业遮篷中调查流物理,以检查造型在湍流运输方面的独特签名。来自俄勒冈州葡萄园的气象数据分析表明,无论上述套筒的风向如何,通过将平均流向窜入藤状方向的情况下,遮篷强烈影响流动。另外,树冠子层中的其他流动统计示出了对上述风向和藤行方向之间的差异的依赖性。这包括随着上述凸起流朝行正交的行平行旋转,因此包括冠层位移高度的增加和冠层顶剪切长度刻度的减小。在应力张量,湍流动力学能量预算和能谱的组件中还观察到基于基于风向的变型。虽然光谱结果表明,SONON风光测定法不足以解决冠层内的所有重要运动尺度,但能量谱峰仍然表现出冠层和风向的依赖性。这些变化表明,当流量排列的流量对齐期间,转车冠层对流动期间对流动的影响类似于稀疏檐篷,并且在流量是行正交时,效果类似于致密的效果檐篷。

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