首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >A model for spiral flows in basal ice and the formation of subglacial flutes based on a Reiner-Rivlin rheology for glacial ice
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A model for spiral flows in basal ice and the formation of subglacial flutes based on a Reiner-Rivlin rheology for glacial ice

机译:基于Reiner-Rivlin冰川冰流变学的基础冰螺旋流模型和冰川下凹槽形成

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Flutes are elongated sediment ridges formed at the base of glaciers and ice sheets. In this paper, we show that flutes can be the product of a corkscrew-like spiral flow in basal ice that removes sediment from troughs between flutes and deposits it at their crests, as first suggested by Shaw and Freschauf. In order to generate the type of basal ice flow required for this mechanism, the viscous rheology of ice must allow for the generation of deviatoric normal stresses transverse to the main flow direction. This type of behavior, which is commonly observed in real nonlinearly viscous and viscoelastic fluids, can be described by a Reiner-Rivlin rheology. Here, we develop a mathematical model that describes the role of these transverse stresses in generating spiral flows in basal ice and investigate how these flows lead to the amplification of initially small basal topography and the eventual formation of assemblies of evenly spaced subglacial flutes.
机译:凹槽是在冰川和冰盖底部形成的细长沉积物脊。在本文中,我们表明,排屑槽可能是基冰中类似开瓶器的螺旋流的产物,可以从排屑槽之间的槽中清除沉淀物并将其沉积在其波峰处,这是Shaw和Freschauf首先提出的。为了产生该机制所需的基础冰流类型,冰的粘性流变必须允许产生横向于主流方向的偏斜法向应力。 Reiner-Rivlin流变学可以描述这种类型的行为,通常在实际的非线性粘性和粘弹性流体中观察到。在这里,我们建立了一个数学模型,描述了这些横向应力在基冰中产生螺旋流的作用,并研究了这些流如何导致初始较小的基础形貌放大并最终形成了均匀分布的冰川下凹槽的组件。

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