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THE EFFECTS OF URBANIZATION ON CATCHMENT STORAGE CAPACITY-A CONCEPTUAL MODEL IN PLAIN CATCHMENT IN YANGTZ RIVER DELTA

机译:城市化对集水区储存能力的影响 - 杨溪三角洲普通集水区的概念模型

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Drainage networks and underlying surface in Yangtze river delta area have been significantly changed due to the rapid urbanization and adversely affects the hydrological processes. In this study we took the Qinhuai River Basin in Yangtz River delta as study area, analyzed the total catchment storage capacity and its temporal variation from 1980s to 2010s, based on a conceptual model involving four modules: river network, lakes/reservoir, wetland and forest. The data source is TM images from 1980s and 2010s, thematic maps, digital elevation model, and hydrological data from gauge stations. The main findings of this study is, 1) the current storage capacity of Qinhuai river catchment decreased by 13.45%, from 207.39*106 m3 to 179.49*106 m3 during the study period; 2) the lake/reservoir storage is the most sensitive module to the urbanization, while the river network module serves as the biggest contributor to the total catchment storage capacity. More efforts should be made in the protection and restoration of the low-level rivers, forest and wetlands to optimize the catchment storage capacity. The results of the study would provide support in policy formulating and intervention strategies, and at the same time, opening new challenges for the evaluation of the hydrological process in high urbanized area.
机译:由于城市化快速,长江三角洲地区的排水网络和潜在的表面显着改变,对水文过程产生不利影响。在这项研究中,我们将秦淮河流域乘坐扬子河三角洲作为学习区,自20世纪80年代至2010年的总集水区储存能力及其时间变异,基于涉及四个模块:河网络,湖泊/水库,湿地和湿地和湿地森林。数据源是来自1980年代和2010年的TM图像,专题地图,数字高程模型和来自量电台的水文数据。本研究的主要结果是1)秦淮河集水区的储存能力下降了13.45%,从207.39 * 106 M3至179.49 * 106 M3期间; 2)湖泊/储存器存储是城市化最敏感的模块,而河道网络模块作为总集水区存储容量的最大贡献者。应在保护和恢复低级河流,森林和湿地的保护和恢复方面进行更多努力,以优化集水区存储容量。该研究的结果将在政策制定和干预战略中提供支持,同时开辟了评估高城市化地区水文过程的新挑战。

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