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Influences of large-scale convection and moisture source on monthly precipitation isotope ratios observed in Thailand, Southeast Asia

机译:大规模对流和水分源对泰国泰国月度降水同位素比的影响,东南亚

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摘要

Many paleoclimatic records in Southeast Asia rely on rainfall isotope ratios as proxies for past hydroclimatic variability. However, the physical processes controlling modern rainfall isotopic behaviors in the region is poorly constrained. Here, we combined isotopic measurements at six sites across Thailand with an isotope-incorporated atmospheric circulation model (IsoGSM) and the Hybrid Single-Particle Lagrangian Integrated Trajectory (HYSPLIT) model to investigate the factors that govern the variability of precipitation isotope ratios in this region. Results show that rainfall isotope ratios are both correlated with local rainfall amount and regional outgoing longwave radiation, suggesting that rainfall isotope ratios in this region are controlled not only by local rain amount (amount effect) but also by large-scale convection. As a transition zone between the Indian monsoon and the western North Pacific monsoon, the spatial difference of observed precipitation isotope among different sites are associated with moisture source. These results highlight the importance of regional processes in determining rainfall isotope ratios in the tropics and provide constraints on the interpretation of paleo-precipitation isotope records in the context of regional climate dynamics. (C) 2018 Elsevier B.V. All rights reserved.
机译:东南亚的许多古叶血管目录依赖于降雨同位素比作为过去的循环变异性的代理。然而,控制该地区现代降雨同位素行为的物理过程受到严重受损。在这里,我们将同位素测量组合在泰国的六个地点,具有同位素的大气循环模型(ISOGSM)和混合单粒子拉格朗日集成轨迹(HYSPLIT)模型,以研究该区域治理降水同位素比变异性的因素。结果表明,降雨同位素比与局部降雨量和区域外出辐射相关,表明该地区的降雨同位素比不仅受到当地雨量(数量效应)而且还通过大规模对流来控制。作为印度季风与西北太平洋季风之间的过渡区,不同部位观察到的沉淀同位素的空间差异与水分源相关。这些结果突出了区域进程在热带地区测定的降雨同位素比例中的重要性,并为区域气候动态的背景下的古降水同位素记录的解释提供约束。 (c)2018年elestvier b.v.保留所有权利。

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