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Changes in river networks and their storage and regulation capacities in the Rapidly Urbanized Taihu Basin, China

机译:太湖流域快速城市化过程中河网的变化及其储量和调节能力

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摘要

Owing to the crucial environmental and hydrological functions of river systems and intensive human disturbance, further investigations of their change patterns and flood control functions are urgently needed. The Rapidly Urbanized Taihu Basin (RUTB) was selected as the study region to investigate changes in the river networks, the relationship between changes in river systems and urbanization, and the changes in the static drainage storage capacity (SC) and regulation capacity (RC) from the 1980s to the 2010s. The results indicated that the total drainage density in RUTB decreased by 10.17%. For the first-, second-, and third-order rivers, the changes are +7.61%, -14.35%, and -17.84%, respectively. Spatially, the change pattern of the third-order river drainage density displayed significant spatial clustering. The ratio of main to tributary river length (Rmt) was increased from 0.31 in the 1980s to 0.39 in the 2010s. Spatially, the drastic increases were found in the south-east of Wu-Cheng-Xi-Yu, the east of Yang-Cheng-Dian-Mao, and the central southern part of Hang-Jia-Hu. Results moreover show that urbanization has the greatest influence on the third-order drainage density, especially around the secondary and rapidly developing cities. The demand for flood control has led to a slight increase in the density of main rivers. The values of SC and RC decreased by 0.69% and 40.61% in RUTB, respectively. These changes were mainly concentrated around the major cities and urban corridors. The decrease in SC was caused by the decay of the river system, and the reduction in RC was caused by a combination of river system degradation and increase in ordinary water levels.
机译:由于河流系统至关重要的环境和水文功能以及人类的强烈干扰,因此迫切需要进一步研究其变化方式和防洪功能。太湖流域快速城市化(RUTB)被选为研究区域,以调查河网变化,河流系统变化与城市化之间的关系以及静态排水储水量(SC)和调节量(RC)的变化从1980年代到2010年代。结果表明,RUTB中的总排水密度下降了10.17%。对于一阶,二阶和三阶河流,变化分别为+7.61%,-14.35%和-17.84%。在空间上,三阶河流排水密度的变化模式表现出明显的空间聚类。主干河与支流河的长度之比(Rmt)从1980年代的0.31增加到2010年代的0.39。在空间上,急剧增加的地区位于吴城西域的东南,杨城滇毛的东部和杭嘉湖的中南部。结果还表明,城市化对三级排水密度的影响最大,尤其是在二级和快速发展的城市周围。防洪需求导致主要河流的密度略有增加。 RUTB中的SC和RC值分别下降了0.69%和40.61%。这些变化主要集中在主要城市和城市走廊周围。 SC的下降是由河流系统的衰落引起的,而RC的下降是由河流系统的退化和普通水位的增加共同造成的。

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