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Impacts of moisture sources on the isotopic inverse altitude effect and amount of precipitation in the Hani Rice Terraces region of the Ailao Mountains

机译:哀牢山哈尼梯田地区水分源对同位素反演海拔高度效应和降水量的影响

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Generally, the isotopic composition of precipitation on the windward side of gigantic mountains has a negative altitude gradient. However, an inverse isotopic altitude effect occurs when there are diverse vapor sources. This paper takes the Quanfuzhuang River Basin (QRB), which lies in the Hani Rice Terraces region of the southern Ailao Mountains in southwest China, as the study area. The study analyzes the isotopic data of 42 precipitation samples collected between an elevation range from 1500 m to 2024 m a.s.l. during the rainy season (from May to October) of 2015. The results indicate that there is an inverse isotopic altitude effect of precipitation with a positive isotope altitude gradient of 0.47%/100 m and 1.10%/100 m for delta O-18 and delta H-2, respectively, at the mountaintop, while the precipitation amount increases at related elevations. A mixture of over peak airflow and recycled vapor is responsible for the inverse altitude effect as well as increasing rainfall amount. The positive precipitation isotopic altitude gradient is primarily caused by the local water cycle, and the increased precipitation amount is mainly caused by over peak airflow. The inverse isotopic altitude effect is also found in the Colorado Rocky Mountains, the Central Hindu Kush Mountains and the Tianshan Mountains, and findings from those mountains support these findings on the influence of mixed moisture sources on isotopic inverse altitude effects. (C) 2019 Published by Elsevier B.V.
机译:通常,巨大山脉的迎风面的同位素组成具有负的高度梯度。但是,当存在多种蒸气源时,会发生同位素反高度效应。本文以中国西南哀牢山南部哈尼水稻梯田地区的全福庄河流域(QRB)为研究区域。该研究分析了在海拔1500 m至2024 m a.s.l之间收集的42个降水样品的同位素数据。结果表明,在2015年的雨季(5月至10月),同位素反演海拔高度效应,δO-18和δO-18同位素正高度梯度分别为0.47%/ 100 m和1.10%/ 100 m。山顶分别有δH-2,而相关高度处的降水量增加。过高的气流和再循环的蒸汽的混合物是造成反高度效应以及增加降雨量的原因。正的降水同位素高度梯度主要是由当地的水循环引起的,而降水量增加的主要原因是过高的气流。在科罗拉多洛矶山脉,中兴都库什山脉和天山山脉中也发现了同位素反演高度效应,这些山脉的发现支持了这些发现,说明了混合水分源对同位素反演海拔效应的影响。 (C)2019由Elsevier B.V.发布

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