...
首页> 外文期刊>Current Organic Synthesis >Integrated assessment of extreme climate and landuse change impact on sediment yield in a mountainous transboundary watershed of India and Pakistan
【24h】

Integrated assessment of extreme climate and landuse change impact on sediment yield in a mountainous transboundary watershed of India and Pakistan

机译:极端气候和土地利用变化对印度山区跨界流域沉积物产量的综合评估

获取原文
获取原文并翻译 | 示例
           

摘要

Assessment of climate and land use changes impact including extreme events on the sediment yield is vital for water and power stressed countries. Mangla Reservoir is the second-largest reservoir in Pakistan, and its capacity is being reduced due to rapid sedimentation and will be threatened under climate and land use changes. This paper discusses the consequences of climate and land use change on sediment yield at Mangla Dam using General Circulation Models (GCMs), Land Change Modeler (LCM), Soil and Water Assessment Tool (SWAT) model after calibration and validation. Results show that over the historical period temperature is observed to increase by 0.10oC/decade and forest cover is observed to reduce to the level of only 16% in 2007. Nevertheless, owing to the forest conservation policy, the forest cover raised back to 27% in 2012. Anticipated land use maps by using LCM of 2025, 2050 and 2100 showed that the forest cover will be 33%, 39.2%, and, 53.7%, respectively. All seven GCMs projected the increase in temperature and five GCMs projected an increase in precipitation, however, two GCMs projected a decrease in precipitation. Owing to climate change, land use change and combined impact of climate and land use change on annual sediment yield (2011-2100) may vary from -42.9% to 39.4%, 0% to -27.3% and, -73% to 39.4%, respectively. Under climate change scenarios projected sediment yield is mainly linked with extreme events and is expected to increase with the increase in extreme events. Under land use change scenarios projected sediment yield is mainly linked with the forest cover and is expected to decrease with the increase in forest cover. The results of this study are beneficial for planners, watershed managers and policymakers to mitigate the impacts of climate and land use changes to enhance reservoir life by reducing the sediment yield.
机译:气候和土地利用的评估变化影响包括沉积物产量的极端事件对水和权力强调国家至关重要。 Mangla水库是巴基斯坦第二大水库,由于快速沉淀,其能力降低,并将受到气候和土地利用变化的威胁。本文讨论了校准和验证后使用通用循环模型(GCMS),土地改变建模器(LCM),土壤和水评估工具(SWAT)模型在Mangla大坝沉积物产量对沉积物收益率的后果。结果表明,在历史时期温度下观察到增加0.10℃/十年,观察到森林覆盖率在2007年减少到仅为16%的水平。然而,由于森林保护政策,森林覆盖率升至27 %在2012年。通过使用2025,2050和2100的LCM的预期土地使用地图表明,森林覆盖率分别为33%,39.2%和53.7%。所有七个GCM都投射了温度的增加,5个GCMS预计降水量的增加,但是两个GCM投入降水量。由于气候变化,土地利用变化和气候和土地利用的综合影响年度沉积物收益率(2011-2100)可能因-42.9%而变化至39.4%,0%至-27.3%,-73%至39.4% , 分别。根据气候变化的情况,投影沉积物产量主要与极端事件相关联,预计会随着极端事件的增加而增加。在土地使用情况下,改变情景投影沉积物产量主要与森林覆盖有关,预计会随着森林覆盖的增加而降低。本研究的结果有利于规划者,流域管理者和政策制定者来减轻气候和土地利用变化的影响,通过降低沉积物产量来提高水库生活。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号