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Organised Motion in a Tall Spruce Canopy: Temporal Scales, Structure Spacing and Terrain Effects

机译:高大的云杉冠层中的有组织的运动:时间尺度,结构间距和地形效果

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This study investigates the organised motion near the canopy-atmosphere interface of a moderately dense spruce forest in heterogeneous, complex terrain. Wind direction is used to assess differences in topography and surface properties. Observations were obtained at several heights above and within the canopy using sonic anemometers and fast-response gas analysers over the course of several weeks. Analysed variables include the three-dimensional wind vector, the sonic temperature, and the concentration of carbon dioxide. Wavelet analysis was used to extract the organised motion from time series and to derive its temporal scales. Spectral Fourier analysis was deployed to compute power spectra and phase spectra. Profiles of temporal scales of ramp-like coherent structures in the vertical and longitudinal wind components showed a reversed variation with height and were of similar size within the canopy. Temporal scales of scalar fields were comparable to those of the longitudinal wind component suggesting that the lateral scalar transport dominates. The existence of a - 1 power law in the longitudinal power spectra was confirmed for a few cases only, with a majority showing a clear 5/3 decay. The variation of effective scales of organised motion in the longitudinal velocity and temperature were found to vary with atmospheric stability, suggesting that both Kelvin-Helmholtz instabilities and attached eddies dominate the flow with increasing convectional forcing. The canopy mixing-layer analogy was observed to be applicable for ramp-like coherent structures in the vertical wind component for selected wind directions only. Departures from the prediction of m = w L s -p# = 8-10 (where w is the streamwise spacing of coherent structures in the vertical wind w and L s is a canopy shear length scale) were caused by smaller shear length scales associated with large-scale changes in the terrain as well as the vertical structure of the canopy. The occurrence of linear gravity waves was related to a rise in local topography and can therefore be referred to as mountain-type gravity waves. Temporal scales of wave motion and ramp-like coherent structures were observed to be comparable.
机译:这项研究调查了异质复杂地形中中等密度云杉林冠层-大气界面附近的有组织运动。风向用于评估地形和表面特性的差异。在数周的时间内,使用声速风速计和快速响应气体分析仪在冠层上方和内部的几个高度进行了观测。分析变量包括三维风向矢量,声波温度和二氧化碳浓度。小波分析用于从时间序列中提取有组织的运动并推导其时间尺度。频谱傅里叶分析被部署来计算功率谱和相位谱。垂直和纵向风分量中的斜坡状连贯结构的时间尺度轮廓显示出高度的反向变化,并且在冠层内具有相似的大小。标量场的时间尺度与纵向风分量的时间尺度相当,这表明横向标量传输占主导地位。仅在少数情况下证实了在纵向功率谱中存在-1幂定律,而大多数情况则显示出明显的5/3衰减。发现有组织运动的有效尺度在纵向速度和温度上的变化随大气稳定性而变化,这表明开尔文-亥姆霍兹不稳定性和附着的涡流都随着对流强迫的增加而支配了流动。观察到冠层混合层的类比仅适用于选定风向的垂直风分量中的斜坡状连贯结构。偏离m = w L s -p#= 8-10的预测(其中w是垂直风w中相干结构的流向间距,L s是冠层剪切长度尺度)是由于较小的剪切长度尺度引起的地形和树冠的垂直结构发生了大规模变化。线性重力波的发生与局部地形的上升有关,因此可以称为山型重力波。观察到波浪运动和斜坡状相干结构的时间尺度可比。

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