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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Correlation of the isotopic composition in precipitation with local conditions in alpine regions
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Correlation of the isotopic composition in precipitation with local conditions in alpine regions

机译:相关的同位素组成降水在高山与当地条件地区

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Mountains within alpine regions can have a significant influence on the geographic distribution of precipitation and on local- to regional-scale climatic and meteorological conditions. Consequently, the oxygen and hydrogen isotope compositions of precipitation are affected by alpine topography as well. The Austrian Network of Isotopes in Precipitation, one of the oldest and densest networks in the world, is therefore an excellent source of isotope data of the last 30 years for investigating the complex processes governing the isotopic composition of precipitation in alpine regions. Fractionation during phase change processes leads to significant isotopic variation in precipitation. Here we show that the spatial isotopic variability, especially in alpine regions, is to a large extent due to nonequilibrium fractionation. Additionally, we conclude that meteorological conditions prevailing at the sampling site are mainly responsible for the observed seasonal pattern in deuterium excess. These results are validated by stepwise multiple regression as well as by applying an empirical model for deuterium excess, which is an indicator of the differential behavior of D and 18O values in vapor and precipitation. The present results enhance the development of models based on detailed statistical assessment of local climatic conditions to improve the quantitative interpretation of isotope data for paleoclimatology delivered by glacial ice of alpine regions.
机译:在高山地区有山重大影响的地理降水的分布和在当地对地区级的核气候和气象条件。降水的同位素组成影响高山地形。奥地利网络降水的同位素最古老的和密集的网络之一世界,因此的极好来源过去30年的同位素数据调查复杂的流程管理在高山的降水同位素组成地区。过程会导致明显的同位素变异在降水。同位素变化,特别是在高山地区,在很大程度上是由于非平衡分馏。得出结论:气象条件抽样地点主要是主流负责观察到的季节性模式氘过量。逐步多元回归的运用实证模型氘过量,这是一个微分的指标的行为在蒸汽和D、18 o值降水。模型基于详细的发展统计评估当地的气候条件改善量化对同位素数据的解读古气候学的冰川冰高山地区。

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