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A new Holocene relative sea-level curve for western Brittany (France): Insights on isostatic dynamics along the Atlantic coasts of north-western Europe

机译:布列塔尼西部(法国)新的全新世相对海平面曲线:西北欧洲大西洋沿岸的等静力学动态

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This study presents new Relative Sea Level (RSL) data that were obtained in the Finistere region (Western tip of Brittany, France) and the implications those data have for the understanding of the isostatic dynamics across north-western Europe, and more specifically along the Atlantic and Channel coasts. New stratigraphic sequences were obtained and analyzed to derive 24 new Sea-level Index Points, in which 6 are basal. These new data considerably increase the knowledge we have of the RSL evolution along the coasts of Western Brittany since the last 8 kyr B.P. From this new dataset, RSL was estimated to rise continuously over the last 8 kyr with a major inflection at ca. 6 kyr cal. BP. Our results show large vertical discrepancies between the RSL records of Brittany and South-Western UK, with the latter plotting several meters below the new data. From this comparison we suggest that the two regions underwent a very different pattern and/or amplitude of subsidence during the last 8 kyr which has implications for the spatial and temporal pattern of the peripheral bulge of the European ice sheets. We compared our data against predictions from Glacio-Isostatic Adjustment models (GIA models). There are large misfits between RSL observations and the predictions of the global (ICE-5G (VM2a) - Peltier, 2004, GLAC1-b - Tarasov and Peltier, 2002; Tarasov et al., 2012, Briggs et al., 2014) and regional UK models ("BIIS" - Bradley et al., 2009; Bradley et al., 2011; "Kuchar"- Kuchar et al., 2012), which can't be resolved through significant changes to the deglaciation history and size of the British Irish Ice sheet. Paleo-tidal modelling corrections indicate regional changes in the tidal ranges played a negligible role in the data-model misfits. Hence, we propose that the misfits are due to some combination of: (i) unaccounted mass-loss of far-field ice-sheets (Antarctic ice-Sheet or Laurentide Ice-Sheet), (ii) unresolved differences in the deglaciation history and size of the Fennoscandian Ice sheet or, more likely, (iii) significant lateral variations in the Earth's structure across the English Channel. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究提供了在Finistere地区(法国布列塔尼的西端)获得的新的相对海平面(RSL)数据,以及这些数据对理解整个西北欧洲,尤其是沿等静压动力学的意义。大西洋和海峡沿岸。获得了新的地层层序并进行了分析,得出了24个新的海平面指数点,其中6个为基础。这些新数据极大地增加了我们对自后8年(公元前)起布列塔尼西部沿海地区RSL演变的了解。根据这个新的数据集,RSL估计在过去的8年中持续上升,主要变化在大约。 6千瓦Cal。 BP。我们的结果表明,布列塔尼和英国西南部的RSL记录之间存在较大的垂直差异,而后者则在新数据下方几米处绘制。通过比较,我们认为这两个区域在最后8年内经历了非常不同的沉降模式和/或幅度,这对欧洲冰盖外围隆起的时空格局具有影响。我们将我们的数据与冰川等静压调整模型(GIA模型)的预测进行了比较。 RSL观测值与全球预测之间存在很大的不匹配(ICE-5G(VM2a)-Peltier,2004; GLAC1-b-Tarasov和Peltier,2002; Tarasov等人,2012; Briggs等人,2014),以及英国的区域模型(“ BIIS”-Bradley等,2009; Bradley等,2011;“ Kuchar”-Kuchar等,2012),无法通过对冰期的历史和大小进行重大更改来解决英国爱尔兰冰盖。古潮汐模型校正表明,潮汐范围的区域变化在数据模型失配中起着微不足道的作用。因此,我们认为这种失配是由于以下几种原因造成的:(i)远场冰盖(南极冰盖或洛朗泰德冰盖)的质量损失未知,(ii)冰川融化历史的未解决差异以及芬诺斯堪的亚冰盖的大小,或者更可能是(iii)整个英吉利海峡地球结构的重大横向变化。 (C)2015 Elsevier Ltd.保留所有权利。

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