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卧龙降水稳定同位素与季风活动的关系
摘要点击 2838  全文点击 1526  投稿时间:2007-05-19  修订日期:2007-08-15
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中文关键词  降水  氢、氧稳定同位素  过量氘  季风  南风指数  卧龙自然保护区
英文关键词  precipitation  stable hydrogen and oxygen isotopes  d-excess  monsoon  south wind index  Wolong Nature Reserve
作者单位
徐振 南京大学生命科学学院森林生态与全球变化实验室南京 210093
国电环境保护研究院
南京 210031 
刘玉虹 南京大学生命科学学院森林生态与全球变化实验室南京 210093 
王中生 南京大学生命科学学院森林生态与全球变化实验室南京 210093 
崔军 南京大学生命科学学院森林生态与全球变化实验室南京 210093 
徐庆 中国林业科学院森林生态环境与保护研究所北京 100093 
安树青 南京大学生命科学学院森林生态与全球变化实验室南京 210093 
刘世荣 中国林业科学院森林生态环境与保护研究所北京 100093 
中文摘要
      2003-07~2004-07在四川卧龙自然保护区对逐次降水事件进行采样,分析了降水的稳定同位素特征及其与降水量、气温和风向风速等气象参数的关系.结果表明,4~8月降水的过量氘(d-excess)值为(8.4±7.4)‰,降水由东亚季风带来的大洋水汽主导;9~10月降水的d-excess值为(-7.4±12.5)‰,降水由南亚季风带来的经过强烈分馏作用的大洋水汽主导;11月~次年3月降水的d-excess值为(12.5±12.1)‰,降水由本地蒸发水汽以及西风环流带来的内陆蒸发水汽主导.季风期降水的δD和δ18O具降水量效应(r分别为-0.389、-0.380,p<0.05),次一级是气温影响(p ≤0.10).季风期降水的δD、δ18O与南风指数呈显著负相关(r分别为-0.354、-0.390,p<0.05),表明降水中的稳定同位素比率对水汽来源与运输过程指示性很强,特别是南亚季风的暴发带来了稳定同位素比率和d-excess值都极低的降水.
英文摘要
      Stable isotopic analyses with precipitation, air temperature, wind direction and wind speed were performed in the Wolong Nature Reserve from July, 2003 to July, 2004. Results showed that d-excess values were (8.4±7.4)‰, (-7.4±12.5)‰ and (12.5±12.1)‰ in precipitation events from April to August, September to October and November to March, respectively. Stable isotopic characteristics and d-excess values indicated that precipitation was mainly brought by the East Asia monsoon from ocean surface moisture from April to August, by the Indian summer monsoon from ocean moisture which extremely affected by rainout (strong depletion of heavy isotope) from September to October, and by Westerly from inland evaporation and local evaporation from November to March. Significant negative correlations between isotopic values and precipitation, which was amount effect, were found from April to October (r=-0.389 for δD and r=-0.380 for δ18O, p<0.05, respectively). Temperature effect also might affect isotopic values in precipitation (p≤0.10). During the active period of the East Asia monsoon and the Indian summer monsoon, stable isotopes in precipitation events had significant negative correlations with south wind index (r=-0.354 for δD and r=-0.390 for δ18O, p<0.05, respectively), indicating that isotopic values closely associated with the origin and transport of moisture, and especially the Indian summer monsoon could bring vapors with very low isotopic values and d-excess values.

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