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基于CMDAS驱动SWAT模式的精博河流域水文相关分量模拟、验证及分析

孟现勇 王浩 雷晓辉 蔡思宇

生态学报2017,Vol.37Issue(21):7114-7127,14.
生态学报2017,Vol.37Issue(21):7114-7127,14.DOI:10.5846/stxb201608231719

基于CMDAS驱动SWAT模式的精博河流域水文相关分量模拟、验证及分析

Simulation, validation, and analysis of the Hydrological components of Jing and Bo River Basin based on the SWAT model driven by CMADS

孟现勇 1王浩 1雷晓辉 1蔡思宇1

作者信息

  • 1. 中国水利水电科学研究院流域水循环模拟与调控国家重点实验室,北京100038
  • 折叠

摘要

Abstract

Describing the changing rules of land surface variables by using meteorological and hydrological models has always been a research hotspot in the fields of atmospheric and hydrological science.However,due to the scarcity of weather stations in West China,traditional weather stations cannot satisfy the requirements of high precision simulation of large scale land surface components.Using the Jing and Bo River Basin in Xinjiang as a research area,the present study used the China Meteorological Assimilation Driving Datasets tbr the SWAT model (CMADS) to drive the Soil and Water Assessment Tool (SWAT) model,and then completed calibration,verification,and time-space relation analysis of each land surface component (such as soil moisture content,snow depth,and snow melt).Our analysis showed that the CMADS dataset can drive and calibrate the SWAT mode land complete localization work in Jin and Bo River Basin.The NSE efficiency coefficients of the SWAT model driven by the CMADS dataset were generally controlled between 0.659 and 0.942 at the monthly scale,and were also controlled between 0.526 and 0.815 at the daily scale.Furthermore,our analysis indicated that the soil moisture content would reach a high level for the first time between March and April each year,which is mainly caused by snow melting in the high mountains.However,when snow melting finished,due to an increase in precipitation and temperature,soil temperature fluctuated until the middle of October,when cold air brought considerable precipitation and snow.Finally,soil water was transformed into frozen soil until the snow melting period in the following year.Thereafter,soil water would increase again until the end of the snow melting period.On one hand,this study verified that the CMADS+ SWAT mode can enhance the performance ability of the SWAT model in the arid areas of northwestern China,which lacks weather stations.On the other hand,the study provided a scientific explanation for time-space changing rules of land surface components (such as soil moisture and evaporation) in the Jing and Bo River Basin.The findings of this research will play a certain role in promoting the development of China's meteorological and hydrological sciences.

关键词

CMADS/SWAT/精博河流域/地表分量

Key words

CMADS/SWAT/Jing and Bo River Basin/surface component

引用本文复制引用

孟现勇,王浩,雷晓辉,蔡思宇..基于CMDAS驱动SWAT模式的精博河流域水文相关分量模拟、验证及分析[J].生态学报,2017,37(21):7114-7127,14.

基金项目

“南水北调中线干线工程应急运行集散控制技术研究与示范”(2015BAB07B03) (2015BAB07B03)

国家973计划课题(2013CB036406) (2013CB036406)

北京市科技计划课题(Z141100006014049) (Z141100006014049)

2016年度流域水循环模拟与调控国家重点实验室代表性成果培育课题(2016CG05) (2016CG05)

生态学报

OA北大核心CHSSCDCSCDCSTPCD

1000-0933

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