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On the Movements of the North Atlantic Subpolar Front in the Preinstrumental Past*

机译:前仪器化过去的北大西洋亚极锋的运动*

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摘要

Three sediment records of sea surface temperature (SST) are analyzed that originate from distant locations in the North Atlantic, have centennial-to-multicentennial resolution, are based on the same reconstruction method and chronological assumptions, and span the past 15 000 yr. Using recursive least squares techniques, an estimate of the time-dependent North Atlantic SST field over the last 15 kyr is sought that is consistent with both the SST records and a surface ocean circulation model, given estimates of their respective error (co)variances. Under the authors' assumptions about data and model errors, it is found that the 10 degrees C mixed layer isotherm, which approximately traces the modern Subpolar Front, would have moved by ~15 degrees of latitude southward (northward) in the eastern North Atlantic at the onset (termination) of the Younger Dryas cold interval (YD), a result significant at the level of two standard deviations in the isotherm position. In contrast, meridional movements of the isotherm in the Newfoundland basin are estimated to be small and not significant. Thus, the isotherm would have pivoted twice around a region southeast of the Grand Banks, with a southwest-northeast orientation during the warm intervals of the Bolling-Allerod and the Holocene and a more zonal orientation and southerly position during the cold interval of the YD. This study provides an assessment of the significance of similar previous inferences and illustrates the potential of recursive least squares in paleoceanography.
机译:分析了三个来自北大西洋遥远地点的海表温度(SST)沉积物记录,具有百年到百年的分辨率,基于相同的重建方法和时间顺序的假设,跨越了过去的15000年。使用递归最小二乘技术,寻求对过去15年内与时间相关的北大西洋SST场的估计,该估计与SST记录和地表海洋环流模型都一致,并给出了各自的误差(协方差)估计值。在作者对数据和模型误差的假设下,发现大约追踪现代次极锋的10摄氏度混合层等温线在北大西洋东部向南(北)移动了约15度纬度。等温线位置的两个标准差水平上的显着结果是Younger Dryas冷间隔(YD)的发作(终止)。相比之下,纽芬兰盆地等温线的子午线运动估计很小,并不重要。因此,等温线将绕大银行东南部区域旋转两次,在Bolling-Allerod和全新世的暖期期间具有西南-东北方向,而在YD的冷期期间则具有更多的纬向和南风位置。 。这项研究提供了对以前类似推论的意义的评估,并说明了古海洋学中递归最小二乘的潜力。

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