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首页> 外文期刊>Quaternary Science Reviews: The International Multidisciplinary Review Journal >Ice marginal dynamics during surge activity, Kuannersuit Glacier, Disko Island, West Greenland
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Ice marginal dynamics during surge activity, Kuannersuit Glacier, Disko Island, West Greenland

机译:西格陵兰迪斯科岛的Kuannersuit冰川,潮涌活动期间的冰边缘动力学

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摘要

The Kuannersuit Glacier surged 11 km between 1995 and 1998. The surge resulted in the formation of an ice cored thrust moraine complex constructed by subglacial and proglacial glaciotectonic processes. Four main thrust zones are evident in the glacier snout area with phases of compressional folding and thrusting followed by hydrofracture in response to the build-up of compressional stresses and the aquicludal nature of submarginal permafrost and naled. Various types of stratified debris-rich ice facies occur within the marginal zone: The first (Facies I) comprises laterally continuous strata of ice with sorted sediment accumulations, and is reworked and thrust naled ice. The second is laterally discontinuous stratified debris-rich ice with distinct tectonic structures, and is derived through subglacial extensional deformation and localised regelation (Facies II), whilst the third type is characterised by reworked and brecciated ice associated with the reworking and entrainment of meteoric ice (Facies III). Hydrofracture dykes and sills (Facies IV) cross-cut the marginal ice cored thrust moraines, with their sub-vertically frozen internal contact boundaries and sedimentary Structures, suggesting supercooling operated as high-pressure evacuation of water occurred during thrusting, but this is not related to the formation of basal stratified debris-rich ice. Linear distributions of sorted fines transverse to ice flow, and small stratified sediment ridges that vertically cross-cut the ice surface tip-ice of the thrust zone relate to sediment migration along crevasse traces and fluvial infilling of crevasses. From a palaeoglaciological viewpoint, marginal glacier tectonics, ice sediment content and sediment delivery mechanisms combine to control the development of this polythermal surge valley landsystem. The bulldozing of proglacial sediments and the folding and thrusting of naled leads to the initial development of the outer zone of the moraine complex. This becomes buried in bulldozed outwash sediment and well-sorted fines through surface ablation of naled. Up-ice of this, the heavily thrust margin becomes buried in sediment melted out from basal debris-rich ice and subglacial diamicts routed along thrusts. These mechanisms combine to deliver sediment to supraglacial localities, and promote the initial preservation of structurally controlled moraines through insulation, and the later development of kettled dead ice terrain.
机译:Kuannersuit冰川在1995年至1998年之间激增了11公里。激增导致形成了由冰下和冰期冰川构造过程构造的冰芯逆冲冰ora构造。冰川鼻子区域明显有四个主要的逆冲带,受压褶皱和逆冲作用的阶段,接着是由于压应力的增加和边缘多年冻土的含水性质而形成的裂缝。在边缘区域内会出现各种类型的分层的,富含碎屑的冰相:第一个(相I)包括横向连续的冰层,并带有分类的沉积物堆积,并进行了重新加工并推入了最终的冰层。第二种是横向不连续的,分层的,富含碎屑的冰,具有明显的构造结构,是通过冰川下的伸展变形和局部胶凝作用而形成的(图二),而第三种的特征是返工和角砾状冰与返修和夹带冰有关。 (图三)。水力压裂堤坝(Facies IV)通过边缘垂直冻结的内部接触边界和沉积结构横切了边缘冰芯逆冲冲断层,表明过冷是在冲断过程中发生高压抽空的情况下进行的,但这无关形成基础分层的富含碎屑的冰。垂直于冰流的分类细粒的线性分布以及垂直横切推力区冰面尖端冰的小层状沉积脊与沿缝隙痕迹的沉积物迁移和裂隙的河流填充有关。从古冰川学的角度来看,边缘冰川构造,冰沉积物含量和沉积物输送机制相结合来控制这种多热浪涌谷地系统的发展。冰川沉积物的推土以及纳尔纳德的折叠和推挤导致冰ora复合物外部区域的初步发展。它被纳洛兹的表面消融,被埋没在推土冲刷的冲刷沉积物中,并且被很好地分类。这样做的结果是,大量的逆冲推力边缘被埋在沉积物中,这些沉积物是从富含基底碎屑的冰和沿逆冲推力滑下的冰川下部铁熔化的。这些机制相结合,将沉积物输送到冰河边缘地区,并通过隔热作用促进了结构受控的冰粒的初始保存,并促进了釜化死冰地形的发展。

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