4.5 Article

Response of the groundwater system in the Guanzhong Basin (central China) to climate change and human activities

期刊

HYDROGEOLOGY JOURNAL
卷 26, 期 5, 页码 1429-1441

出版社

SPRINGER
DOI: 10.1007/s10040-018-1757-7

关键词

Groundwater system; Climate change; Human activities; Spatial-temporal scales; China

资金

  1. National Natural Science Foundation of China [41230314, U1603243]
  2. Shaanxi Science and Technology Research and Development Project [2014 K15-01-02]
  3. program for Changjiang Scholars and Innovative Research Team of the Chinese Ministry of Education [IRT0811]
  4. Fundamental Research Funds for the Central Universities [310829175006]

向作者/读者索取更多资源

The Guanzhong Basin in central China features a booming economy and has suffered severe drought, resulting in serious groundwater depletion in the last 30 years. As a major water resource, groundwater plays a significant role in water supply. The combined impact of climate change and intensive human activities has caused a substantial decline in groundwater recharge and groundwater levels, as well as degradation of groundwater quality and associated changes in the ecosystems. Based on observational data, an integrated approach was used to assess the impact of climate change and human activities on the groundwater system and the base flow of the river basin. Methods included: river runoff records and a multivariate statistical analysis of data including historical groundwater levels and climate; hydro-chemical investigation and trend analysis of the historical hydro-chemical data; wavelet analysis of climate data; and the base flow index. The analyses indicate a clear warming trend and a decreasing trend in rainfall since the 1960s, in addition to increased human activities since the 1970s. The reduction of groundwater recharge in the past 30 years has led to a continuous depletion of groundwater levels, complex changes of the hydro-chemical environment, localized salinization, and a strong decline of the base flow to the river. It is expected that the results will contribute to a more comprehensive management plan for groundwater and the related eco-environment in the face of growing pressures from intensive human activities superimposed on climate change in this region.

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