首页> 外文期刊>Hydrological ProcHydrological Processesrnesses >LAND‐USE IMPACT ON WATERSHED RESPONSE: THE INTEGRATION OF TWO‐DIMENSIONAL HYDROLOGICAL MODELLING AND GEOGRAPHICAL INFORMATION SYSTEMS
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LAND‐USE IMPACT ON WATERSHED RESPONSE: THE INTEGRATION OF TWO‐DIMENSIONAL HYDROLOGICAL MODELLING AND GEOGRAPHICAL INFORMATION SYSTEMS

机译:土地利用对流域响应的影响:二维水文模型和地理信息系统的整合

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摘要

The integration of a two-dimensional, raster-based rainfall–runoff model, CASC2D, with a raster geographical information system (GIS), GRASS, offers enhanced capabilities for analysing the hydrological impact under a variety of land management scenarios. The spatially varied components of the watershed, such as slope, soil texture, surface roughness and land-use disturbance, were characterized in GRASS at a user-specified grid cell resolution for input into the CASC2D model. CASC2D is a raster-based, single-event rainfall–runoff model that divides the watershed into grid cell elements and simulates the hydrological processes of infiltration, overland flow and channel flow in response to distributed rainfall precipitation. The five-step integration of CASC2D and GRASS demonstrates the potential for analysing spatially and temporally varied hydrological processes within a 50 square mile semi-arid watershed. By defining possible land-use disturbance scenarios for the watershed, a variety of rainfall–runoff events were simulated to determine the changes in watershed response under varying disturbance and rainfall conditions. Additionally, spatially distributed infiltration outputs derived from the simulations were analysed in GRASS to determine the variability of hydrological change within the watershed. Grid cell computational capabilities in GRASS allow the user to combine the scenario simulation outputs with other distributed watershed parameters to develop complex maps depicting potential areas of hydrological sensitivity. This GIS–hydrological model integration provides valuable spatial information to researchers and managers concerned with the study and effects of land-use on hydrological response.
机译:二维的基于栅格的降雨径流模型CASC2D与栅格地理信息系统(GIS)GRASS的集成提供了增强的功能,可以分析各种土地管理方案下的水文影响。在GRASS中,以用户指定的网格单元分辨率对流域的空间变化分量(例如坡度,土壤质地,表面粗糙度和土地利用干扰)进行了表征,以输入到CASC2D模型中。 CASC2D是一个基于栅格的单事件降雨-径流模型,该模型将流域划分为网格单元元素,并模拟响应于分布式降雨降水的入渗,陆上流量和河道流量的水文过程。 CASC2D和GRASS的五步集成显示了分析50平方英里半干旱流域内时空变化的水文过程的潜力。通过定义流域可能的土地利用扰动情景,模拟了各种降雨径流事件,以确定在变化的扰动和降雨条件下流域响应的变化。此外,在GRASS中分析了从模拟获得的空间分布入渗输出,以确定流域内水文变化的变化性。 GRASS中的网格单元计算功能使用户可以将情景模拟输出与其他分布式分水岭参数结合起来,以绘制复杂的地图,以描绘潜在的水文敏感性区域。这种GIS与水文模型的集成为关注土地利用的研究及其对水文响应影响的研究人员和管理人员提供了宝贵的空间信息。

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