GVAX野外运动对喜马拉雅中部复杂地形边界层湍流的洞察

IF 2.2 4区 地球科学 Q3 METEOROLOGY & ATMOSPHERIC SCIENCES Asia-Pacific Journal of Atmospheric Sciences Pub Date : 2023-11-22 DOI:10.1007/s13143-023-00341-5
Akanksha Rajput, Narendra Singh, Jaydeep Singh, Shantanu Rastogi
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引用次数: 0

摘要

有限的观测妨碍了对山区地形湍流特征的理解,这些湍流特征是由斜坡的加热或冷却、风、垂直运动以及热或湿平流造成的,这些平流将气溶胶和其他污染物分散到该地区。本文利用1290 MHz雷达风廓线资料,计算了2011年11月至2012年3月恒河流域气溶胶实验(GVAX)强强度野外观测的喜马拉雅中部站点的边界层高度(BLH)、折射率结构常数(Cn2)和能量耗散率(η)。基于雷达风廓线(RWP)估算的BLH和i与无线电探空仪进行了验证,表明数据集的有效性,为进一步的研究提供了依据。log Cn2和log _2的季节变化,平均值分别为≈-12 m−2/3和-2 m2 s−3,与高山引起的局地环流和大气边界层的稳定性有关。发现弱气流中的弱分层是深层混合的主要原因,特别是在春季夜间边界层。此外,云层覆盖水平显著影响湍流强度,与晴朗天空相比,由于强烈的上升气流和下降气流运动,最高云层覆盖导致log Cn2(约-11 m−2/3)大幅增加。此外,整个站点的气溶胶负荷分布,加上BLH、大气稳定性和地形诱导环流的行为,表明气溶胶向山区输送的独特季节机制。这项研究为湍流混合的日和季节模式以及污染物通过该地区边界层过程输送的机制提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Insights of Boundary Layer Turbulence Over the Complex Terrain of Central Himalaya from GVAX Field Campaign

Limited observations hinder understanding of turbulent characteristics in mountainous terrain resulting from heating or cooling of slopes, wind, vertical motions, and heat or moisture advection, which disperse aerosols and other pollutants over the region. In this study, the 1290 MHz radar wind profiler data are utilized to compute the boundary layer height (BLH), the refractive index structure constant (Cn2), and the energy dissipation rate (ɛ) over the central Himalayan site for the period of November 2011 to March 2012, from the intense Ganges Valley Aerosol Experiment (GVAX) field measurements. The radar wind profiler (RWP) based estimation of BLH and ɛ is validated against the radiosonde, representing the effectiveness of the datasets for further investigation. The strong seasonal variation of log Cn2 and log ɛ, with average values of ≈ -12 m−2/3 and -2 m2 s−3, respectively, is associated with the mountain-induced local circulations and stability in the atmospheric boundary layer. The weak stratification during weak flow is found to be responsible for deep mixing, particularly in the nocturnal boundary layer in spring. Furthermore, the level of cloud cover significantly impacts the strength of turbulence, with the highest cloud cover resulting in a substantial increase in log Cn2 (approximately -11 m−2/3) due to intense updraft and downdraft motions compared to clear skies. Additionally, the distribution of aerosol loading across the site, coupled with the behavior of BLH, atmospheric stability, and orographic-induced circulations, implies distinctive seasonal mechanisms for transporting aerosols toward the mountains. This study offers valuable insights into the diurnal and seasonal patterns of turbulent mixing and the mechanisms behind the transport of pollutants through boundary layer processes over the region.

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来源期刊
Asia-Pacific Journal of Atmospheric Sciences
Asia-Pacific Journal of Atmospheric Sciences 地学-气象与大气科学
CiteScore
5.50
自引率
4.30%
发文量
34
审稿时长
>12 weeks
期刊介绍: The Asia-Pacific Journal of Atmospheric Sciences (APJAS) is an international journal of the Korean Meteorological Society (KMS), published fully in English. It has started from 2008 by succeeding the KMS'' former journal, the Journal of the Korean Meteorological Society (JKMS), which published a total of 47 volumes as of 2011, in its time-honored tradition since 1965. Since 2008, the APJAS is included in the journal list of Thomson Reuters’ SCIE (Science Citation Index Expanded) and also in SCOPUS, the Elsevier Bibliographic Database, indicating the increased awareness and quality of the journal.
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