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环境变化对黄河中游汾河径流情势的影响研究
引用本文:王国庆,张建云,贺瑞敏.环境变化对黄河中游汾河径流情势的影响研究[J].水科学进展,2006,17(6):853-858.
作者姓名:王国庆  张建云  贺瑞敏
作者单位:1.河海大学水资源环境学院, 江苏, 南京, 210098;
基金项目:黄河水利委员会科研基金;国家科技攻关计划
摘    要:20世纪70年代后我国许多河流的径流量呈下降的趋势.在这些趋势变化中,如何区分人类活动及气候变化的影响是当前流域水文研究的热点和难点.提出了区分人类活动和气候变化影响的分析思路以及定量计算方法.介绍了SIMHYD概念性降水径流模型,并应用黄河中游汾河流域"天然"时期的水文、气象资料率定了模型参数,通过水文模拟还原了人类活动影响期间的天然径流量,进而分析了汾河流域径流情势的变化原因.结果表明:SIMHYD降水径流模型对汾河流域天然月径流过程具有良好的模拟效果;就1970-1999年的平均状况而言,气候因素和人类活动对径流的影响量分别占径流减少总量的35.9%和4.1%,人类活动是汾河流域径流减少的主要因素.

关 键 词:汾河流域    水文模拟    气候变化    水土保持    径流变化
文章编号:1001-6791(2006)06-0853-06
收稿时间:2006-07-11
修稿时间:2006-09-04

Impacts of environmental change on runoff in Fenhe river basin of the middle Yellow River
WANG Guo-qing,ZHANG Jian-yun,HE Rui-min.Impacts of environmental change on runoff in Fenhe river basin of the middle Yellow River[J].Advances in Water Science,2006,17(6):853-858.
Authors:WANG Guo-qing  ZHANG Jian-yun  HE Rui-min
Institution:1.Department of Water Resources and Environment, Hohai University, Nanjing 210098, China;2.Yellow River Conservancy Commission, Zhengzhou 450003, China;3.Nanjing Hydraulic Research Institute, Nanjing 210029, China
Abstract:Runoff in many rivers in China have presented decreasing trend over the past decades.How to identify the effects of climate change and human activities in the trend variation are a current hot topic,a difficulty problem as well.An assessment method to quantitatively distinguish the effects of climate change and human activities was put forward in the paper.SIMHYD rainfall runoff model was briefly introduced and calibrated with "natural" hydro-meteorological data in Fenhe River basin.Based on simulation of natural runoff in human-disturbed period with hydrological model,causes of runoff variation were analyzed.And results show that SIMHYD rainfall runoff model has good performance for natural monthly discharge simulation.On average,35.9% and 64.1% of total annual runoff reduction from 1970-1999 were induced by climate change and human activities respectively.Human activities are main reasons of runoff reduction in Fenhe River basin.
Keywords:Fenhe River basin  hydrological simulation  climate change  soil and water conservation  runoff variation
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