...
首页> 外文期刊>Journal of hydrometeorology >Evaluating LSM-Based Water Budgets over a West African Basin Assisted with a River Routing Scheme
【24h】

Evaluating LSM-Based Water Budgets over a West African Basin Assisted with a River Routing Scheme

机译:借助河道计划评估西非流域基于LSM的水预算

获取原文
获取原文并翻译 | 示例
           

摘要

Within the framework of the African Monsoon Multidisciplinary Analysis (AMMA) Land Surface Model Intercomparison Project phase 2 (ALMIP-2), this study evaluates the water balance simulated by the Interactions between Soil, Biosphere, and Atmosphere (ISBA) over the upper Oueme River basin, in Benin, using a mesoscale river routing scheme (RRS). The RRS is based on the nonlinear Muskingum-Cunge method coupled with two linear reservoirs that simulate the time delay of both surface runoff and base flow that are produced by land surface models. On the basis of the evidence of a deep water-table recharge in that region, a reservoir representing the deep-water infiltration (DWI) is introduced. The hydrological processes of the basin are simulated for the 2005-08 AMMA field campaign period during which rainfall and streamflow data were intensively collected over the study area. Optimal RRS parameter sets were determined for three optimization experiments that were performed using daily streamflow at five gauges within the basin. Results demonstrate that the RRS simulates streamflow at all gauges with relative errors varying from -20% to 3% and Nash-Sutcliffe coefficients varying from 0.62 to 0.90. DWI varies from 24% to 67% of the base flow as a function of the subbasin. The relatively simple reservoir DWI approach is quite robust, and further improvements would likely necessitate more complex solutions (e.g., considering seasonality and soil type in ISBA); thus, such modifications are recommended for future studies. Although the evaluation shows that the simulated streamflows are generally satisfactory, further field investigations are necessary to confirm some of the model assumptions.
机译:在非洲季风多学科分析(AMMA)地表模型比对项目第二阶段(ALMIP-2)的框架内,本研究评估了由上欧梅姆河上的土壤,生物圈和大气之间的相互作用模拟的水平衡(ISBA)贝宁流域使用中尺度河道计划(RRS)。 RRS基于非线性Muskingum-Cunge方法和两个线性储层,它们模拟了由地表模型产生的地表径流和基流的时间延迟。根据该地区深层地下水补给的证据,引入了代表深层水渗透的储层。在2005-08 AMMA野外运动期间模拟了流域的水文过程,在此期间集中研究区域内的降雨和流量数据。针对三个优化实验确定了最佳RRS参数集,这些优化实验是使用流域内五个水位的日流量进行的。结果表明,RRS可以模拟所有规格的流量,相对误差范围从-20%到3%,Nash-Sutcliffe系数范围从0.62到0.90。 DWI随流域的变化从基础流量的24%到67%不等。相对简单的水库DWI方法非常健壮,进一步的改进可能需要更复杂的解决方案(例如,考虑ISBA中的季节和土壤类型);因此,建议将此类修改用于将来的研究。尽管评估表明模拟的流量总体上令人满意,但仍需要进一步的现场调查以确认某些模型假设。

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