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An introduction to stable water isotopes in climate models: benefits of forward proxy modelling for paleoclimatology

机译:稳定水同位素在气候模型中的介绍:古叶病学正向代理建模的好处

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Stable water isotopes have been measured in a wide range of climate archives, with the purpose of reconstructing regional climate variations. Yet the common assumption that the isotopic signal is a direct indicator of temperature proves to be misleading under certain circumstances, since its relationship with temperature also depends on e.g. atmospheric circulation and precipitation seasonality. The present article introduces the principles, benefits and caveats of using climate models with embedded water isotopes as a support for the interpretation of isotopic climate archives. A short overview of the limitations of empirical calibrations of isotopic proxy records is presented, with emphasis on the physical processes that infirm its underlying hypotheses. The simulation of climate and its associated isotopic signal, despite difficulties related to downscaling and intrinsic atmospheric variability, can provide a "transfer function" between the isotopic signal and the considered climate variable. The multi-proxy data can then be combined with model output to produce a physically consistent climate reconstruction and its confidence interval. A sensitivity study with the isotope-enabled global circulation model CAM3iso under idealised present-day, pre-industrial and mid-Holocene is presented to illustrate the impact of a changing climate on the isotope-temperature relationship.
机译:稳定的水同位素已经在各种气候档案中测量,目的是重建区域气候变化。然而,同位素信号是温度直接指示的常见假设证明在某些情况下在某些情况下被误导,因为它与温度的关系也取决于例如大气循环和降水季节性。本文介绍了利用嵌入水同位素的气候模型的原理,益处和警告,作为对同位素气候档案的解释的支持。提出了同位素代理记录的实证校准局限性的简短概述,重点是体现其底层假设的物理过程。尽管与较低的稳定和内在大气变异性有关的困难,但是气候和相关同位素信号的模拟,可以在同位素信号和所考虑的气候变量之间提供“转移功能”。然后可以将多代理数据与模型输出组合以产生物理上一致的气候重建及其置信区间。提出了在理想的现行日,预工业和中间全新世之下进行同位素的全局循环模型CAM3ISO的敏感性研究,以说明变化气候对同位素温度关系的影响。

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