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delta O-18 water isotope in the iLOVECLIM model (version 1.0) - Part 2: Evaluation of model results against observed delta O-18 in water samples

机译:iLOVECLIM模型(版本1.0)中的O-18同位素同位素-第2部分:针对水样品中观察到的O-18评估模型结果

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摘要

The H218O stable isotope was previously introduced in the three coupled components of the earth system model iLOVECLIM: atmosphere, ocean and vegetation. The results of a long (5000 yr) pre-industrial equilibrium simulation are presented and evaluated against measurement of H218O abundance in present-day water for the atmospheric and oceanic components. For the atmosphere, it is found that the model reproduces the observed spatial distribution and relationships to climate variables with some merit, though limitations following our approach are highlighted. Indeed, we obtain the main gradients with a robust representation of the Rayleigh distillation but caveats appear in Antarctica and around the Mediterranean region due to model limitation. For the oceanic component, the agreement between the modelled and observed distribution of water δ18O is found to be very good. Mean ocean surface latitudinal gradients are faithfully reproduced as well as the mark of the main intermediate and deep water masses. This opens large prospects for the applications in palaeoclimatic context. © Author(s) 2013.
机译:H218O稳定同位素先前已引入地球系统模型iLOVECLIM的三个耦合组件中:大气,海洋和植被。提出并进行了长期(5000年)的工业前均衡模拟的结果,并根据当今水中大气和海洋成分中H218O丰度的测量进行了评估。对于大气,发现该模型可再现观察到的空间分布及其与气候变量的关系,但有一些优点,尽管突出了我们方法的局限性。确实,我们获得了具有瑞利蒸馏的稳健表示的主要梯度,但是由于模型限制,在南极洲和地中海地区附近出现了警告。对于海洋成分,发现水δ18O的模拟分布与观测分布之间的一致性非常好。忠实地再现了平均海洋表面纬度梯度以及主要中深水团的标记。这为在古气候背景下的应用打开了广阔的前景。 ©作者2013。

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