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Response of hydrological processes to land-cover and climate changes in Kejie watershed, south-west China

机译:中国西南部科杰流域水文过程对土地覆盖和气候变化的响应

摘要

Land-cover/climate changes and their impacts on hydrological processes are of widespread concern and a great challenge to researchers and policy makers. Kejie Watershed in the Salween River Basin in Yunnan, South-West China, has been reforested extensively during the past two decades. In terms of climate change, there has been a marked increase ill temperature. The impact of these changes oil hydrological processes required investigation: hence, this paper assesses aspects of changes in land cover and climate. The response of hydrological processes to land-cover/climate changes was examined using the Soil and Water Assessment Tool (SWAT) and impacts of single factor, land-use/climate change on hydrological processes were differentiated. Land-cover maps revealed extensive reforestation at the expense of grassland, cropland, and barren land. A significant monotonic trend and noticeable changes had Occurred in annual temperature over the long term. Long-term changes in annual rainfall and streamflow were weak; and changes in monthly rainfall (May, June, July, and September) were apparent. Hydrological simulations showed that the impact of climate change oil Surface water, baseflow, and streamflow was offset by the impact of land-cover change. Seasonal variation in streamflow was influenced by seasonal variation in rainfall. The earlier onset of monsoon and the variability of rainfall resulted in extreme monthly streamflow. Land-cover change played a dominant role in mean annual Values; seasonal variation in surface water and streamflow was influenced mainly by seasonal variation in rainfall; and land-cover change played a regulating role in this. Surface water is more sensitive to land-cover change and climate change: an increase in surface water in September and May due to increased rainfall was offset by a decrease in surface water due to land-cover change. A decrease in baseflow caused by changes in rainfall and temperature was offset by all increase in baseflow due to land-cover change. Copyright (C) 2009 John Wiley & Sons, Lid.
机译:土地覆盖/气候变化及其对水文过程的影响是引起广泛关注的问题,对研究人员和政策制定者构成了巨大挑战。在过去的二十年里,中国西南云南的萨尔温江流域的克杰流域已被重新造林。在气候变化方面,疾病温度明显升高。这些变化的影响需要对石油水文过程进行调查:因此,本文评估了土地覆盖和气候变化的各个方面。使用土壤和水评估工具(SWAT)检查了水文过程对土地覆盖/气候变化的响应,并区分了单因素,土地利用/气候变化对水文过程的影响。土地覆盖图显示了广泛的造林活动,但以草地,耕地和荒地为代价。长期来看,年温度出现了明显的单调趋势和明显变化。年降水量和流量的长期变化微弱;并且月降雨量(5月,6月,7月和9月)的变化明显。水文模拟表明,气候变化油对地表水,基流和水流的影响被土地覆盖变化的影响所抵消。溪流的季节性变化受降雨季节变化的影响。季风的爆发和降雨的多变性导致了每月的极端流量。土地覆被变化在年均价值中起着主导作用。地表水和水流量的季节变化主要受降雨的季节变化影响;土地覆被变化对此起了调节作用。地表水对土地覆被变化和气候变化更敏感:由于降雨增加,9月和5月地表水增加被土地覆被变化引起的地表水减少所抵消。降雨和温度变化引起的底流减少被土地覆盖变化引起的所有底流增加所抵消。版权所有(C)2009 John Wiley&Sons,Lid。

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