首页> 外文期刊>Hydrological Processes >Impacts of environmental stressors on the water resources of intensively managed hydrologic systems
【24h】

Impacts of environmental stressors on the water resources of intensively managed hydrologic systems

机译:环境压力源对集约化管理水文系统水资源的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Watersheds are complex systems due to their surface and subsurface spatially connected water fluxes and biochemical processes that shape Earth's critical zone. In intensively managed landscapes, the implementation of watershed management practices (WMPs) regulate their short-term responses, whereas climate variability controls the long-term processes. Understanding their responses to anthropogenic and natural stressors requires a holistic approach that takes into account their multiscale spatiotemporal linkages. The objective of this study was to simulate the impacts of spatially and temporally varying WMPs and projected climate changes on the surface and groundwater resources in the Upper Sangamon River Basin (USRB), a watershed in central Illinois greatly impacted by agricultural and industrial operations. The physically based hydrologic model MIKE-SHE was used to simulate the hydrologic responses of the basin to different WMPs and climatic conditions. The simulation of a WMP was varied spatially across the basin to determine the spectrum of responses and critical conditions. In general, the wetlands and forested riparian buffer scenarios were found to cause a reduction in the average streamflow, whereas crop rotation had varied responses depending on the location of implementation and the climate condition assumed. Reductions of up to 30% in the average streamflow were found for the forested riparian buffer under the ESM 2M climate projections, whereas an increase of up to 13% with the crop rotation schemes under CM3 climate was predicted. The model results showed that the installation of tile drains across the USRB increased the water table depth (from ground level) by up to 56%, making crop production possible. Groundwater level in USRB appeared to be more sensitive to future climatic conditions than to WMP implementation. The impacts of WMPs are determined to depend on the climate conditions under which they are applied. Investigating individual and combined stressors' effects over the critical zone at a watershed scale can lead to a more comprehensive analysis of the risk and trade-offs in every managerial decision that will enable an efficient use of resources.
机译:流域是复杂的系统,这是由于其表面和地下空间连通的水通量以及形成地球关键区域的生化过程。在集约化管理的景观中,流域管理实践(WMP)的实施调节了它们的短期响应,而气候多变性则控制了长期过程。要了解他们对人为和自然压力源的反应,需要采取一种综合方法,其中应考虑到他们的多尺度时空联系。这项研究的目的是模拟时空变化的WMPs和预计的气候变化对上游Sangamon流域(USRB)地表和地下水资源的影响,这是伊利诺伊州中部受农业和工业生产影响最大的分水岭。基于物理的水文模型MIKE-SHE被用来模拟流域对不同WMPs和气候条件的水文响应。整个流域内WMP的模拟在空间上变化,以确定响应范围和临界条件。一般而言,湿地和森林河岸缓冲带情景导致平均流量减少,而作物轮作则根据实施地点和假定的气候条件而做出不同的响应。在ESM 2M气候预测下,森林河岸缓冲区的平均流量减少了多达30%,而在CM3气候下,轮作计划预计将增加多达13%。模型结果表明,在USRB上安装瓷砖排水管可使地下水位深度(距地面高度)增加了56%,从而使农作物生产成为可能。 USRB中的地下水位似乎对未来的气候条件比对WMP实施更为敏感。确定WMP的影响取决于应用WMP的气候条件。在分水岭规模上研究单个和组合压力源在关键区域的影响,可以导致对每个管理决策中的风险和权衡进行更全面的分析,从而可以有效利用资源。

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