[1]BIAN Yuming,DAI Haiyan,WANG Bing,et al.Spatiotemporal Distribution and Periodicity of Annual Precipitation in Daxing’anling Forest Region of Inner Mongolia[J].Research of Soil and Water Conservation,2017,24(03):146-150.
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Research of Soil and Water Conservation[ISSN 1005-3409/CN 61-1272/P] Volume:
24
Number of periods:
2017 03
Page number:
146-150
Column:
Public date:
2017-06-28
- Title:
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Spatiotemporal Distribution and Periodicity of Annual Precipitation in Daxing’anling Forest Region of Inner Mongolia
- Author(s):
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BIAN Yuming1, DAI Haiyan2, WANG Bing1, ZHANG Jian3, BA Te1, ZHANG Qiuliang1
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1. Forestry College of Inner Mongolia Agricultural University, Hohhot 010010, China;
2. Inner Mongolia Ecology and Agricultural Meteorology Centre, Hohhot 010051, China;
3. Xingan Meng Forestry Science Research Institute, Hinggan League, Inner Mongolia 137400, China
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- Keywords:
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Daxing’anling of Inner Mongolia; forest region; precipitation; Morlet wavelet analysis
- CLC:
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P426.6
- DOI:
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- Abstract:
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Based on the observational data of precipitation in 11 meteorological stations from 1951 to 2010 in forest region of Inner Mongolia Daxing’anling, we used a linear regression, accumulative anomaly method, Mann Kendall test (Mann-Kendall) method and Morlet wavelet analysis method to analyze the annual precipitation changes in forest region of Inner Mongolia Daxing’anling in recent 40 years and to reveal the variation characteristics of annual precipitation under the climate warming background. The results showed as follows: precipitation in forest region of Inner Mongolia Daxing’anling showed a slight downward with fluctuation, the trend tendency rate was -7.4 mm/decade, inter annual variation precipitation was significant, precipitation of climate trend rate had very obvious regional features, which experienced the wet—dry—wet—dry process; the time of precipitation mutation occurred roughly from 1975 to 1979 and in 1999 based on the cumulative distance average analysis and Mann Kendall (Mann-Kendall) test method. Morlet wavelet analysis results showed that annual precipitation in recent 40 years in Daxing’anling forest region of Inner Mongolia contained a number of periods with different time scales, the 27-year periodic oscillation was the strongest, and had the most significant effect on precipitation, and high precipitation period will occur in the years 2014 to 2020.