Projected changes in soil freeze depth and their eco-hydrological impacts over the Tibetan Plateau during the 21st century

高原(数学) 环境科学 降水 背景(考古学) 归一化差异植被指数 气候变化 植被(病理学) 生态系统 自然地理学 土壤水分 含水量 气候学 大气科学 水文学(农业) 生态学 土壤科学 地理 气象学 地质学 数学 数学分析 病理 考古 岩土工程 生物 医学
作者
Hu Li,Xiaoduo Pan,Xiaoqing Peng,Rana Muhammad Ali Washakh,Min Zheng,Xiaowei Nie
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:905: 167074-167074 被引量:1
标识
DOI:10.1016/j.scitotenv.2023.167074
摘要

In the context of global warming, the soil freeze depth (SFD) over the Tibetan Plateau (TP) has undergone significant changes, with a series of profound impacts on the hydrological cycle and ecosystem. The complex terrains and high elevations of the TP pose great challenges in data acquisition, presenting difficulties for studying SFD in this region. This study employs Stefan's solution and downscaled datasets from the Coupled Model Intercomparison Project Phase 6 (CMIP6) to simulate the future SFDs over the TP. The changing trends of the projected SFDs under different Shared Socio-economic Pathways (SSP) scenarios are investigated, and; the responses of SFDs to potential climatic factors, such as temperature and precipitation, are analyzed. The potential impacts of SFD changes on eco-hydrological processes are analyzed based on the relationships between SFDs, the distribution of frozen ground, soil moisture, and the Normalized Difference Vegetation Index (NDVI). Results show that the projected SFDs of the TP are estimated to decrease at rates of 0.100 cm/yr under the SSP126, 0.330 cm/yr under the SSP245, 0.565 cm/yr under the SSP370, and 0.750 cm/yr under the SSP585. Additionally, the SFD decreased at a rate of 0.160 cm/yr during the historical period from 1950 to 2014, which was between the decreasing rates of the SSP126 and SSP245 scenarios. The projected SFDs are negatively correlated with air temperature and precipitation, more significant under the higher emissions scenario. The projected decrease in SFDs will significantly impact eco-hydrological processes. A rapid decrease in SFD may lead to a decline in soil moisture content and have adverse impacts on vegetation growth. This research provides valuable insights into the future changes in SFD on the TP and their impacts on eco-hydrological processes.

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