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基于SWAT模型的绍兴城市径流时空演变规律分析     被引量:5

Study on Temporal-spatial Changes of Urban Runoff in Shaoxing City

文献类型:期刊文献

中文题名:基于SWAT模型的绍兴城市径流时空演变规律分析

英文题名:Study on Temporal-spatial Changes of Urban Runoff in Shaoxing City

作者:陈成广[1];李晶晶[2];滕凯玲[2];徐立红[2]

机构:[1]绍兴文理学院元培学院建筑工程系;[2]绍兴市环境监测中心站

年份:2017

卷号:37

期号:4

起止页码:29

中文期刊名:水文

外文期刊名:Journal of China Hydrology

收录:CSTPCD、、北大核心2014、CSCD2017_2018、北大核心、CSCD

基金:绍兴市科技计划项目(2014B70041;2014B70049)

语种:中文

中文关键词:SWAT模型;城市径流;校准与验证;时空演变

外文关键词:SWAT model; urban runoff; calibration and validation ; temporal-spatial change

中文摘要:为克服较大尺度城市径流的定量难题,引入了分布式流域水文模型(SWAT),对绍兴城市径流开展了定量模拟及时空演变规律分析。经DEM建模分析,将绍兴城市置于合适尺度的流域内建立SWAT模型;在敏感性分析的基础上,利用径流监测数据对模型进行了校准与验证,模型评价结果表明,所有站点校准期与验证期的平均相对误差Re(-5.29%~8.81%)、判定系数R2(0.91~0.96)和效率系数Ens(0.90~0.94)均满足年水平和月水平径流定量要求。在此基础上,以1992~2011年的降雨为驱动模拟得到了子流域的月径流数据;最后利用地统计学方法(GSM)对绍兴城市径流的时空演变规律进行了分析,并得到了关键源区,为绍兴城市水资源保护与利用提供科学依据。

外文摘要:To solve the quantitative problem of urban runoff at large scale , a distributed watershed hydrological model named soil and water as - sessment tool (SWAT) was employed to quantitatively simulate the urban runoffand analyze the temporal-spatial changes in Shaoxing City. The SWAT model was established by putting the Shaoxing City in a suitable scale watershed based on DEM analysis. And then the SWAT model was calibrated and validated using monitoring data from hydrological stations based on the parameter sensitivity analysis. The results show that the calibrated SWAT model perform well on modeling the annual and monthly runoff in both calibration and validation periods with an average rela - tive error (from -5.29% to 8.81%), coefficient of determination (from 0.91 to 0.96) and coefficient of efficiency (from0.90to0.94). Mean-while, monthly runoff data from 1992 to 2011 at sub-watershed scale were obtained using the calibrated model. Besides , temporal-spatial changes of urban runoff was quantitatively analyzed and the critical source areas (CSAs) was finally gained by means of geo-statistic method (GSM), which will provide the scientific basis forwaterresources protection and utilization.

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