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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >An improved comparison of atmospheric Ar/N2 time series and paired ocean-atmosphere model predictions
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An improved comparison of atmospheric Ar/N2 time series and paired ocean-atmosphere model predictions

机译:大气Ar / N2时间序列与成对海洋-大气模型预测的比较的改进

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Ar/N2 variations in the atmosphere reflect ocean heat fluxes, air-sea gas exchange, and atmospheric dynamics. Here atmospheric Ar/N2 time series are compared to paired ocean-atmosphere model predictions. Agreement between Ar/N2 observations and simulations has improved in comparison to a previous study because of longer time series and the introduction of automated samplers at several of the atmospheric stations, as well as the refinement of the paired ocean-atmosphere models by inclusion of Ar and N2 as active tracers in the ocean component. Although analytical uncertainties and collection artifacts are likely to be mainly responsible for observed Ar/N2 outliers, air parcel back-trajectory analysis suggests that some of the variability in Ar/N2 measurements could be due to the low-altitude history of the air mass collected and, by extension, the local oceanic Ar/N2 signal. Although the simulated climatological seasonal cycle can currently be evaluated with Ar/N2 observations, longer time series and additional improvements in the signal-to-noise ratio will be required to test other model predictions such as interannual variability, latitudinal gradients, and the secular increase in atmospheric Ar/N2 expected to result from ocean warming.
机译:大气中Ar / N2的变化反映了海洋热通量,海气交换和大气动力学。在这里,将大气Ar / N2时间序列与成对的海洋-大气模型预测进行了比较。与以前的研究相比,Ar / N2观测与模拟之间的一致性得到了改善,这是因为更长的时间序列以及在几个大气站引入了自动采样器,以及通过包含Ar来完善了成对的海洋-大气模型N2作为海洋成分中的有效示踪剂。尽管分析不确定性和收集伪像可能是造成观察到的Ar / N2离群值的主要原因,但空气包裹的反向轨迹分析表明,Ar / N2测量值的某些变化可能是由于收集到的空气质量的低空历史所致并扩展为本地海洋Ar / N2信号。尽管目前可以使用Ar / N2观测值评估模拟的气候季节周期,但仍需要更长的时间序列和信噪比的其他改善来测试其他模型预测,例如年际变化,纬度梯度和长期增长预计由于海洋变暖而导致大气中Ar / N2的含量增加

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