Groundwater use for irrigation – a global inventory

地下水 灌溉 环境科学 地下水补给 灌溉统计 水资源管理 水文学(农业) 农场用水 用水 地表水 水资源 灌区 节约用水 含水层 环境工程 地质学 岩土工程 生物 生态学
作者
Stefan Siebert,Jacob J. Burke,J.M. Faurès,Koen Frenken,J. Hoogeveen,Petra Döll,F. T. Portmann
出处
期刊:Hydrology and Earth System Sciences [Copernicus Publications]
卷期号:14 (10): 1863-1880 被引量:1860
标识
DOI:10.5194/hess-14-1863-2010
摘要

Abstract. Irrigation is the most important water use sector accounting for about 70% of the global freshwater withdrawals and 90% of consumptive water uses. While the extent of irrigation and related water uses are reported in statistical databases or estimated by model simulations, information on the source of irrigation water is scarce and very scattered. Here we present a new global inventory on the extent of areas irrigated with groundwater, surface water or non-conventional sources, and we determine the related consumptive water uses. The inventory provides data for 15 038 national and sub-national administrative units. Irrigated area was provided by census-based statistics from international and national organizations. A global model was then applied to simulate consumptive water uses for irrigation by water source. Globally, area equipped for irrigation is currently about 301 million ha of which 38% are equipped for irrigation with groundwater. Total consumptive groundwater use for irrigation is estimated as 545 km3 yr−1, or 43% of the total consumptive irrigation water use of 1277 km3 yr−1. The countries with the largest extent of areas equipped for irrigation with groundwater, in absolute terms, are India (39 million ha), China (19 million ha) and the USA (17 million ha). Groundwater use in irrigation is increasing both in absolute terms and in percentage of total irrigation, leading in places to concentrations of users exploiting groundwater storage at rates above groundwater recharge. Despite the uncertainties associated with statistical data available to track patterns and growth of groundwater use for irrigation, the inventory presented here is a major step towards a more informed assessment of agricultural water use and its consequences for the global water cycle.
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