潘塔纳尔湿地夜间边界层的低空急流-个案研究

Hardiney S. Martins, L. Sá, O. Moraes
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引用次数: 9

摘要

潘塔纳尔位于南美洲中西部地区,是一个独特的生物群落,干旱和洪水交替发生。潘塔纳尔能量平衡的一个重要季节性变化特征是,当该地区被足够淹没时,在夜间感热通量为正(自下而上)的情况下发生。本文研究了潘塔纳尔上空夜间边界层(NBL)结构季节变化的一个有趣方面,即低层急流(low - low Jets)的发生和相关的湍流结构。为此,通过案例研究研究了不同类型低空急流对潘塔纳尔夜间边界层的尺度作用。6个事件,分布如下:2个事件无,2个事件弱剪切和2个事件强剪切。从外面的两个事件来看,一个是在旱季观察到的,另一个是在汛期观察到的。同样的程序应用于其他事件(弱剪切和强剪切)。利用小波变换在尺度上分析和研究了垂直风速和温度的变化,以及它们之间的协方差。在“干”期和“涝”期,NBL湍流特征存在显著差异。观察到,在潘塔纳尔夜间边界层中,弱切变就像一种强迫,产生了自上而下的机制。另一方面,强切变导致涡旋阻塞的情况下,长度尺度大于高度。与枯水期相比,丰水期地表粗糙度的减小显著减小了350米以下最低长度尺度的温度变化。这样的结果有助于更好地理解潘塔纳尔夜间边界层的季节变化,以及具有类似环境特征的其他地区,并且必须在该地区以上流动结构的数值模拟中加以考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low Level Jets in the Pantanal Wetland Nocturnal Boundary Layer - Case Studies
Situated in South America midwest region, Pantanal is a unique biome, alternating dry and flooded periods. An important seasonal variability characteristic from Pantanal's energy balance is the occurrence of situations in which sensible heat flux is positive (bottom-up) during night-time, when the region is flooded enough. In this study it is investigated an interesting aspect of Nocturnal Boundary Layer's (NBL) structure seasonal variability above Pantanal, that is, how Low-Level Jets ( ) occurrence and associated turbulent structure. For this, scale action of different Low-Level Jets ( ) types on Pantanal's Nocturnal Boundary Layer was investigated through case studies. Six events, distributed the following way, were used: Two events without , two events weak shear and two events strong shear. From the two events without , one of them is observed during the dry season and the other, during the flooded one. The same procedure was applied to other events ( weak shear and strong shear). Vertical wind velocity and temperature variance, as well as the covariance among these variables were analyzed and investigated in scale via Wavelet Transform. Remarkable differences were observed among turbulence in NBL characteristics during the “dry” and “flooded” periods. It was observed that weak shear acts like a forcing that generates action of top-down mechanisms in the Pantanal's Nocturnal Boundary-layer. On the other hand, strong shear causes eddies blocking situations with length scales greater than the height. The decrease of the surface roughness at the flooded season, compared to the dry season, reduces remarkably the temperature variance in the lowest length scales below 350m. Such results are useful for a better understanding of seasonal variability in the Pantanal's Nocturnal Boundary-layer, as well as to other regions with similar environmental characteristics and must be taken into consideration in numerical simulations of the flow structure above the region.
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