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首页> 外文期刊>Journal of hydraulic research >Efficient numerical representation of the impacts of flexible plant reconfiguration on canopy posture and hydrodynamic drag
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Efficient numerical representation of the impacts of flexible plant reconfiguration on canopy posture and hydrodynamic drag

机译:柔性植物重新配置对冠层姿势和流体动力阻力影响的有效数值表示

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摘要

This study considered a new approach for representing flexible canopies within large-eddy simulation that captures the impacts of reconfiguration on both the canopy posture and the canopy drag. The unsteady change in plant posture in response to the passage of turbulence structures (monami) was assessed using established steady-reconfiguration models responding to the unsteady velocity at the top of the canopy. The new drag and plant posture models improved the modelling of highly flexible canopies by more accurately capturing the observed vertical distribution of peak Reynolds stress. When compared to models that do not consider reconfiguration, or that represent it only through a velocity-dependent drag coefficient, the addition of a velocity-dependent canopy posture (unsteady reconfiguration) achieved up to a 56% reduction of the root mean square error for mean horizontal flow velocity and Reynolds stress profiles over the canopy. The RMSE for turbulence intensities and skewness were reduced up to 48% and 56%, respectively.
机译:这项研究被认为是一种在大涡模拟中代表灵活的檐篷的一种新方法,捕获了重新配置对冠层姿势和树冠拖动的影响。使用建立的稳定重新配置模型评估响应湍流结构通过的湍流结构(Monami)的不稳定变化,响应于顶棚顶部的不稳定速度。新的阻力和工厂姿势模型通过更准确地捕获观察到的峰值雷诺应力的垂直分布来改善高度灵活的檐篷的建模。与不考虑重新配置的模型相比,或者仅通过速度依赖性拖动系数表示它,速度依赖性的天覆姿势(不稳定重新配置)的增加可达56%的根均方误差减少56%平均水平流速和reynolds在树冠上应力分布。湍流强度和偏斜的RMSE分别降低了48%和56%。

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