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Using object-based geomorphometry for hydro-geomorphological analysis in a Mediterranean research catchment

机译:使用基于对象的地貌测量法在地中海研究流域进行水文地貌分析

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摘要

The aim of the paper is to apply an object-based geomorphometric procedure to define the runoff contribution areas and support a hydro-geomorphological analysis of a 3km2 Mediterranean research catchment (southern Italy). Daily and sub-hourly discharge and electrical conductivity data were collected and recorded during a 3-year monitoring activity. Hydro-chemograph analyses carried out on these data revealed a strong seasonal hydrological response in the catchment that differed from the stormflow events that occur in the wet periods and in dry periods. This analysis enabled us to define the hydro-chemograph signatures related to increasing flood magnitude, which progressively involves various runoff components (baseflow, subsurface flow and surficial flow) and an increasing contributing area to discharge. Field surveys and water table/discharge measurements carried out during a selected storm event enabled us to identify and map specific runoff source areas with homogeneous geomorphological units previously defined as hydro-geomorphotypes (spring points, diffuse seepage along the main channel, seepage along the riparian corridors, diffuse outflow from hillslope taluses and concentrate sapping from colluvial hollows). Following the procedures previously proposed and used by authors for object-based geomorphological mapping, a hydro-geomorphologically oriented segmentation and classification was performed with the eCognition (Trimble, Inc.) package. The best agreement with the expert-based geomorphological mapping was obtained with weighted plan curvature at different-sized windows. By combining the hydro-chemical analysis and object-based hydro-geomorphotype map, the variability of the contribution areas was graphically modeled for the selected event, which occurred during the wet season, by using the log values of flow accumulation that better fit the contribution areas. The results allow us to identify the runoff component on hydro-chemographs for each time step and calculate a specific discharge contribution from each hydro-geomorphotype. This kind of approach could be useful when applied to similar, rainfall-dominated, forested and no-karst catchments in the Mediterranean eco-region.
机译:本文的目的是应用基于对象的地貌程序来定义径流贡献区域,并为3km2的地中海研究流域(意大利南部)提供水文地貌分析。在为期3年的监测活动中,收集并记录了每日和每小时以下的放电和电导率数据。对这些数据进行的水化学分析表明,流域的季节性水文响应很强,与湿润时期和干旱时期的暴雨事件有所不同。这项分析使我们能够定义与增加洪水位有关的水化学仪特征,其逐渐涉及各种径流成分(基础流量,地下流量和表层流量)以及增加的排放面积。在选定的暴风雨事件中进行的实地调查和地下水位/流量测量使我们能够识别和绘制特定的径流源区域,这些区域具有均一的地貌单位,这些单位以前被定义为水力地貌型(春季点,沿主要河道的漫渗,沿河岸的渗漏走廊,山坡距骨的扩散出水和冲积凹坑中的精矿流失)。按照作者先前提出并用于基于对象的地貌制图的程序,使用eCognition(Trimble,Inc.)软件包执行了面向水地貌学的分割和分类。在不同大小的窗口上使用加权平面曲率获得与基于专家的地貌制图的最佳一致性。通过将水化学分析和基于对象的水文地理型图结合起来,使用更适合该贡献的流量累积对数值,以图形方式为所选事件(在雨季期间发生)对贡献区域的变化进行了建模。地区。结果使我们能够在水化学仪上确定每个时间步的径流成分,并从每种水力地质型计算特定的排放贡献。当将这种方法应用于地中海生态区类似的,以降雨为主,有森林和无岩溶的集水区时,可能会有用。

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