Suppr超能文献

利用新的综合指标计算结构和功能水流及泥沙连通性:以大型地中海岸流域为例。

Computing structural and functional flow and sediment connectivity with a new aggregated index: A case study in a large Mediterranean catchment.

机构信息

Department of Soil and Water, Experimental Station of Aula Dei, EEAD-CSIC, Avda. Montañana 1005, 50059 Zaragoza, Spain.

Department of Soil and Water, Experimental Station of Aula Dei, EEAD-CSIC, Avda. Montañana 1005, 50059 Zaragoza, Spain.

出版信息

Sci Total Environ. 2019 Feb 15;651(Pt 1):179-191. doi: 10.1016/j.scitotenv.2018.09.170. Epub 2018 Sep 13.

Abstract

Hydrological connectivity in large catchments is influenced by natural and human-induced heterogeneities and dynamic processes. In this study, a new aggregated index (AIC) based on topography, C-RUSLE factor, RUSLE2 rainfall erosivity, residual topography and soil permeability, was proposed to model structural and functional flow and sediment connectivity (FSC). It was tested in a large Mediterranean catchment (Vero River, NE Spain, 380 km) with contrasted physiographic and climatic conditions (19 land uses and 15 types of lithology). Twelve weather stations were used and simulations were done at 5 m of pixel resolution using a LiDAR-derived DEM and the D-Infinity algorithm. Structural FSC (FSC-st) was computed with both an updated version of Borselli's index (IC) and the AIC. Values of connectivity with AIC followed a normal distribution with a wider range of values compared with the non-normal distribution obtained with Borselli's approach. The differences in the values of FSC-st between the different land uses were similar with the two indices and in agreement with the soil erosion rates reported in comparable landscapes. The spatial characteristics at sub-catchment scale were better reflected with AIC although values of FSC-st in the river and outlet were similar between both indices. Functional FSC (FSC-fn) was computed with AIC during 96 months (September 2009-August 2017) characterising the spatio-temporal dynamic at catchment scale (18% of coefficient of variation). FSC-fn was higher in September, October, June and July and lower during the period December-February. Variation of connectivity in the stream was higher than in the hillslopes. Modelling testing with river flow was satisfactory between November and March, and during the months with high discharge values and weak during the summer, suggesting different runoff and sediment responses over the year. The new AIC appeared as a suitable tool for geomorphic and hydrological studies at catchment scale.

摘要

大流域的水文连通性受自然和人为引起的非均质性和动态过程的影响。本研究提出了一种基于地形、C-RUSLE 因子、RUSLE2 降雨侵蚀力、残余地形和土壤渗透性的新综合指数(AIC),用于模拟结构和功能的水流和泥沙连通性(FSC)。该指数在具有对比明显的地形和气候条件(19 种土地利用和 15 种岩性类型)的大型地中海流域(西班牙东北部的 Vero 河,380km)中进行了测试。使用了 12 个气象站,并使用激光雷达衍生的 DEM 和 D-Infinity 算法在 5m 的像素分辨率下进行了模拟。结构连通性(FSC-st)使用经过更新的 Borselli 指数(IC)和 AIC 进行计算。AIC 的连通性值呈正态分布,与 Borselli 方法获得的非正态分布相比,其值范围更广。两种指数下,不同土地利用类型之间的 FSC-st 值差异相似,且与可比景观中报道的土壤侵蚀率一致。尽管两个指数在河流和出口处的 FSC-st 值相似,但 AIC 更好地反映了亚流域尺度的空间特征。利用 AIC 计算了 96 个月(2009 年 9 月至 2017 年 8 月)的功能连通性(FSC-fn),以描述流域尺度上的时空动态(变异性系数为 18%)。FSC-fn 在 9 月、10 月、6 月和 7 月较高,而在 12 月至 2 月期间较低。溪流的连通性变化高于山坡。11 月至 3 月以及高流量值和夏季弱流量值期间,河流流量模拟测试效果较好,表明全年径流量和输沙量的响应不同。新的 AIC 似乎是流域尺度地貌和水文研究的合适工具。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验