...
首页> 外文期刊>The Cryosphere Discussions >Revealing the former bed of Thwaites Glacier using sea-floor bathymetry: implications for warm-water routing and bed controls on ice flow and buttressing
【24h】

Revealing the former bed of Thwaites Glacier using sea-floor bathymetry: implications for warm-water routing and bed controls on ice flow and buttressing

机译:揭示使用海底沐浴池的前托克斯冰川床:对热水路线和床上控制的影响和冰流量和支撑

获取原文
           

摘要

The geometry of the sea floor immediately beyond Antarctica's marine-terminating glaciers is a fundamental control on warm-water routing, but it also describes former topographic pinning points that have been important for ice-shelf buttressing. Unfortunately, this information is often lacking due to the inaccessibility of these areas for survey, leading to modelled or interpolated bathymetries being used as boundary conditions in numerical modelling simulations. At Thwaites Glacier (TG) this critical data gap was addressed in 2019 during the first cruise of the International Thwaites Glacier Collaboration (ITGC) project. We present more than 2000km2 of new multibeam echo-sounder (MBES) data acquired in exceptional sea-ice conditions immediately offshore TG, and we update existing bathymetric compilations. The cross-sectional areas of sea-floor troughs are under-predicted by up to 40% or are not resolved at all where MBES data are missing, suggesting that calculations of trough capacity, and thus oceanic heat flux, may be significantly underestimated. Spatial variations in the morphology of topographic highs, known to be former pinning points for the floating ice shelf of TG, indicate differences in bed composition that are supported by landform evidence. We discuss links to ice dynamics for an overriding ice mass including a potential positive feedback mechanism where erosion of soft erodible highs may lead to ice-shelf ungrounding even with little or no ice thinning. Analyses of bed roughnesses and basal drag contributions show that the sea-floor bathymetry in front of TG is an analogue for extant bed areas. Ice flow over the sea-floor troughs and ridges would have been affected by similarly high basal drag to that acting at the grounding zone today. We conclude that more can certainly be gleaned from these 3D bathymetric datasets regarding the likely spatial variability of bed roughness and bed composition types underneath TG. This work also addresses the requirements of recent numerical ice-sheet and ocean modelling studies that have recognised the need for accurate and high-resolution bathymetry to determine warm-water routing to the grounding zone and, ultimately, for predicting glacier retreat behaviour.
机译:海底的几何形状立即超越南极洲的海洋终端冰川是对热水路线的根本控制,但它还描述了前地形钉扎点,这对冰货架支架很重要。不幸的是,由于这些调查区域的无法访问,这种信息通常缺乏,导致建模或内插浴被用作数值模拟模拟中的边界条件。在Thwaites Glacier(TG)在国际Thwaites冰川协作(ITGC)项目的第一次巡航期间,在2019年讨论了这一关键数据差距。我们在紫外线TG立即在特殊的海冰条件下获得了超过2000km2的新多射流回声 - 声音(MBES)数据,我们更新了现有的浴室汇编。海底槽的横截面积高达40%或根本没有解决,其中缺少MBES数据,表明槽容量和因此海洋热通量的计算可能被显着低估。地形高度形态的空间变化,已知是TG的浮动冰架的前钉扎点,表明了地形证据支持的床组合物的差异。我们讨论了冰动力学的链接,以实现冰块,包括潜在的正反馈机制,即使很少或没有冰稀释,也可能导致软侵蚀高度的腐蚀。床粗糙度和基底拖动贡献的分析表明,TG前面的海底沐浴浴是现存床区的模拟。在海底槽和山脊上的冰流动将受到今天在接地区的类似高的基础阻力的影响。我们得出结论,关于TG下面的床粗糙度和床组合物类型的可能空间可变性,肯定可以从这些3D碱基数据集中收集更多。这项工作还解决了近期数值冰板和海洋建模研究的要求,已经认识到需要准确和高分辨率的沐浴浴,并最终确定预测冰川撤退行为的温水路由。
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号