Cryosphere-hydrometeorology observations for a water tower unit on the Tibetan Plateau using the BeiDou-3 navigation satellite system

IF 6.9 1区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES Bulletin of the American Meteorological Society Pub Date : 2024-01-29 DOI:10.1175/bams-d-23-0001.1
Ruishun Liu, Lei Wang, Zhongjing Wang, Xiuping Li, Deliang Chen, Jing Zhou, Jia Qi, Yuanwei Wang, Chenhao Chai, Guangpeng Wang, Haibang Xiao
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Abstract

Abstract Life and civilization in arid regions depend on the availability of freshwater. Arid alpine river basins, where hydrological processes are highly sensitive to rapid warming, act as vital water towers for lowland oases. However, scientific understanding of precipitation variability and related cryosphere-hydrology processes is extremely limited because of the scarcity of in situ observations. The upper Danghe River Basin (UDB, ∼14,000 km2) is an arid and westerly- dominated basin on the northeastern Tibetan Plateau and is the water source for the Dunhuang Oasis in China. We have established a comprehensive cryosphere-hydrometeorology observation network in the basin since 2014. At present, the network consists of 21 automatic rain gauges, 22 soil freeze-thaw monitoring stations, 4 automatic weather stations (AWS), and a 50-m gradient meteorological tower with an eddy covariance system. In particular, the 18 sites, located in remote areas without public networks, are equipped with new-generation BeiDou-3 communication terminals that enable the observations to be easily, safely, and reliably read and quality-controlled in near real-time from offices in the city or at home. This integrated observation network over the UDB that facilitates the monitoring of cryosphere- hydrology processes, land-atmosphere interactions, and local weather processes. In addition, the observations are helpful for the objective evaluation, and continual improvement, of hydrological models, satellite-retrieval products, and reanalysis datasets. Finally, the network is expected to promote a better understanding of the status and role of water towers in arid zones and to provide basic data support for the sustainable development of the Dunhuang Oasis and the Belt and Road.
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利用北斗三号导航卫星系统对青藏高原水塔单元进行冰冻圈-水文气象观测
摘要 干旱地区的生活和文明依赖于淡水的供应。干旱的高山河流流域的水文过程对快速变暖非常敏感,是低地绿洲的重要水塔。然而,由于缺乏实地观测,科学界对降水变化和相关冰冻圈-水文过程的了解极为有限。党河上游流域(UDB,∼14,000 平方公里)是青藏高原东北部以西风为主的干旱盆地,也是中国敦煌绿洲的水源地。自 2014 年起,我们在该盆地建立了冰冻圈-水文气象综合观测网络。目前,该观测网由 21 个自动雨量计、22 个土壤冻融监测站、4 个自动气象站(AWS)和 1 个带涡度协方差系统的 50 米梯度气象塔组成。特别值得一提的是,这 18 个观测站位于没有公共网络的偏远地区,配备了新一代北斗-3 通信终端,可以从城市的办公室或家中方便、安全、可靠地读取观测数据,并进行近乎实时的质量控制。该UTB 上的综合观测网络有助于监测冰冻圈-水文过程、陆地-大气相互作用和当地天气过程。此外,观测结果还有助于对水文模型、卫星检索产品和再分析数据集进行客观评估和不断改进。最后,该网络有望促进人们更好地了解干旱区水塔的现状和作用,并为敦煌绿洲和 "一带一路 "的可持续发展提供基础数据支持。
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来源期刊
CiteScore
9.80
自引率
6.20%
发文量
231
审稿时长
6-12 weeks
期刊介绍: The Bulletin of the American Meteorological Society (BAMS) is the flagship magazine of AMS and publishes articles of interest and significance for the weather, water, and climate community as well as news, editorials, and reviews for AMS members.
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