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长江口新河势下横沙浅滩发展分析 被引量:1
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作者 徐锐 《机电设备》 2023年第4期77-80,共4页
从长江口新河势的基本特征出发,按时间线阐述新河势下横沙浅滩侵蚀作用的发展过程,并预测未来趋势。基于自然和人工等2个因素分析侵蚀的成因,以期为后期固沙保滩、航道整治等工程的方案设计提供理论依据。
关键词 新河势 横沙浅滩 侵蚀 航道稳定 长江口
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Climate Change and Its Effects on Runoff of Kaidu River, Xinjiang, China:A Multiple Time-scale Analysis 被引量:33
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作者 XU Jianhua CHEN Yaning +1 位作者 JI Minhe LU Feng 《Chinese Geographical Science》 SCIE CSCD 2008年第4期331-339,共9页
This paper applied an integrated method combining grey relation analysis, wavelet analysis and statistical analysis to study climate change and its effects on runoff of the Kaidu River at multi-time scales. Major find... This paper applied an integrated method combining grey relation analysis, wavelet analysis and statistical analysis to study climate change and its effects on runoff of the Kaidu River at multi-time scales. Major findings are as follows: 1) Climatic factors were ranked in the order of importance to annual runoff as average annual temperature, average temperature in autumn, average temperature in winter, annual precipitation, precipitation in flood season, average temperature in summer, and average temperature in spring. The average annual temperature and annual precipi- tation were selected as the two representative factors that impact the annual runoff. 2) From the 32-year time scale, the annual runoff and the average annual temperature presented a significantly rising trend, whereas the annual precipita- tion showed little increase over the period of 1957-2002. By changing the time scale from 32-year to 4-year, we ob- served nonlinear trends with increasingly obvious oscillations for annual runoff, average annual temperature, and annual precipitation. 3) The changes of the runoff and the regional climate are closely related, indicating that the runoff change is the result of the regional climate changes. With time scales ranging from 32-year, 16-year, 8-year and to 4-year, there are highly significant linear correlations between the annual runoff and the average annual temperature and the annual precipitation. 展开更多
关键词 RUNOFF temperature PRECIPITATION nonlinear trend time scale Kaidu River
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