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一种以超高时空分辨率量化近地表边界层动力学的新方法。

A Novel Method to Quantify Near-Surface Boundary-Layer Dynamics at Ultra-High Spatio-Temporal Resolution.

作者信息

Haugeneder Michael, Lehning Michael, Reynolds Dylan, Jonas Tobias, Mott Rebecca

机构信息

WSL-Institute for Snow and Avalanche Research SLF, Davos, Switzerland.

School of Architecture, Civil and Environmental Engineering, École Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.

出版信息

Boundary Layer Meteorol. 2023;186(2):177-197. doi: 10.1007/s10546-022-00752-3. Epub 2022 Nov 19.

Abstract

UNLABELLED

The lateral transport of heat above abrupt (sub-)metre-scale steps in land surface temperature influences the local surface energy balance. We present a novel experimental method to investigate the stratification and dynamics of the near-surface atmospheric layer over a heterogeneous land surface. Using a high-resolution thermal infrared camera pointing at synthetic screens, a sequence of frames is recorded. The screens are deployed upright and horizontally aligned with the prevailing wind direction. The screen's surface temperature serves as a proxy for the local air temperature. We developed a method to estimate near-surface two-dimensional wind fields at centimetre resolution from tracking the air temperature pattern on the screens. Wind field estimations are validated with near-surface three-dimensional short-path ultrasonic data. To demonstrate the capabilities of the screen method, we present results from a comprehensive field campaign at an alpine research site during patchy snow cover conditions. The measurements reveal an extremely heterogeneous near-surface atmospheric layer. Vertical profiles of horizontal and vertical wind reflect multiple layers of different static stability within above the surface. A dynamic, thin stable internal boundary layer (SIBL) develops above the leading edge of snow patches protecting the snow surface from warmer air above. During pronounced gusts, the warm air from aloft entrains into the SIBL and reaches down to the snow surface adding energy to the snow pack. Measured vertical turbulent sensible heat fluxes are shown to be consistent with air temperature and wind profiles obtained using the screen method and confirm its capabilities to investigate complex in situ near-surface heat exchange processes.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s10546-022-00752-3.

摘要

未标注

地表温度在突然出现的(亚)米级阶跃之上的横向热传输会影响局部地表能量平衡。我们提出了一种新颖的实验方法,用于研究非均质陆地表面上方近地表大气层的分层和动力学。使用指向合成屏幕的高分辨率热红外相机,记录一系列帧。屏幕垂直部署并与盛行风向水平对齐。屏幕表面温度用作当地气温的替代指标。我们开发了一种方法,通过跟踪屏幕上的气温模式来估计厘米分辨率的近地表二维风场。风场估计通过近地表三维短程超声数据进行验证。为了展示屏幕法的能力,我们展示了在高山研究站点进行的一次全面野外考察在积雪斑驳条件下的结果。测量结果揭示了一个极其非均质的近地表大气层。水平风和垂直风的垂直剖面反映了地表上方不同静力稳定度的多层结构。在雪斑前沿上方形成了一个动态的、薄的稳定内边界层(SIBL),保护雪面免受上方较暖空气的影响。在明显的阵风期间,高空的暖空气卷入SIBL并向下到达雪面,为雪层增加能量。测量的垂直湍流感热通量与使用屏幕法获得的气温和风剖面一致,并证实了其研究复杂原位近地表热交换过程的能力。

补充信息

在线版本包含可在10.1007/s10546-022-00752-3获取的补充材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e58/9902431/d6c2a5cf2de9/10546_2022_752_Fig1_HTML.jpg

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