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A global data set of the extent of irrigated land from 1900 to 2005

机译:1900年至2005年灌溉土地范围的全球数据集

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Irrigation intensifies land use by increasing crop yield but also impacts water resources. It affects water and energy balances and consequently the microclimate in irrigated regions. Therefore, knowledge of the extent of irrigated land is important for hydrological and crop modelling, global change research, and assessments of resource use and management. Information on the historical evolution of irrigated lands is limited. The new global historical irrigation data set (HID) provides estimates of the temporal development of the area equipped for irrigation (AEI) between 1900 and 2005 at 5 arcmin resolution. We collected sub-national irrigation statistics from various sources and found that the global extent of AEI increased from 63 million ha (Mha) in 1900 to 111 Mha in 1950 and 306 Mha in 2005. We developed eight gridded versions of time series of AEI by combining sub-national irrigation statistics with different data sets on the historical extent of cropland and pasture. Different rules were applied to maximize consistency of the gridded products to sub-national irrigation statistics or to historical cropland and pasture data sets. The HID reflects very well the spatial patterns of irrigated land as shown on historical maps for the western United States (around year 1900) and on a global map (around year 1960). Mean aridity on irrigated land increased and mean natural river discharge on irrigated land decreased from 1900 to 1950 whereas aridity decreased and river discharge remained approximately constant from 1950 to 2005. The data set and its documentation are made available in an open-data repository at https://mygeohub.org/publications/8 (doi:10.13019/M20599).
机译:灌溉通过增加作物产量来增加土地利用,但也影响水资源。它影响水和能量的平衡,并因此影响灌溉区域的小气候。因此,了解灌溉土地的范围对于水文和作物建模,全球变化研究以及资源利用和管理评估至关重要。有关灌溉土地历史演变的信息有限。新的全球历史灌溉数据集(HID)以5 arcmin的分辨率估算了1900年至2005年之间装备灌溉的区域(AEI)的时间发展。我们从各种来源收集了地方灌溉统计数据,发现全球AEI的范围从1900年的6300万公顷(Mha)增加到1950年的111 Mha和2005年的306 Mha。将地方灌溉统计数据与有关农田和牧场历史范围的不同数据集结合起来。应用了不同的规则,以最大限度地提高网格产品与地方灌溉统计数据或历史耕地和牧场数据集的一致性。 HID很好地反映了灌溉土地的空间格局,如美国西部(大约1900年)和全球地图(大约1960年)的历史地图所示。从1900年到1950年,灌溉土地上的平均干旱增加了,灌溉土地上的自然河流平均排放量减少了,而从1950年到2005年,干旱减少了,河流的流量几乎保持恒定。 ://mygeohub.org/publications/8(doi:10.13019 / M20599)。

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