Delaney Ian, Anderson Leif S
Institut des dynamiques de la surface terrestre (IDYST) Université de Lausanne Bâtiment Géopolis Lausanne Switzerland.
Department of Geology and Geophysics University of Utah Frederick Albert Sutton Building Salt Lake City UT USA.
Geophys Res Lett. 2022 Aug 28;49(16):e2022GL099049. doi: 10.1029/2022GL099049. Epub 2022 Aug 22.
Glaciers are commonly conceptualized as bodies composed of snow and ice. Yet, many glaciers contain a substantial amount of rock, especially those abutting steep mountains. Mountain slopes erode, depositing rocks on glaciers below. This loose rock (or debris) is buried in glaciers and melts out lower down creating a debris cover. Debris cover reduces ice melt, which changes the shape and movement of glaciers. Glacier movement, specifically basal sliding, efficiently sculpts landscapes. To date, we know little about the impacts of surface debris on conditions below glaciers. To help remedy this, we run numerical model simulations which show that debris-covered glaciers erode slower than glaciers unaffected by debris. Reduced melt under surface debris lowers sliding speeds and causes sediment to accumulate at the bed, potentially establishing conditions for surging. The influence of surface debris cover on the subglacial environment may hold substantial implications for alpine sediment storage and landscape evolution.
冰川通常被认为是由雪和冰构成的物体。然而,许多冰川含有大量岩石,尤其是那些毗邻陡峭山脉的冰川。山坡受到侵蚀,将岩石沉积到下方的冰川上。这些松散的岩石(或碎屑)被埋在冰川中,并在较低处融化,形成一层碎屑覆盖层。碎屑覆盖层减少了冰的融化,从而改变了冰川的形状和运动。冰川运动,特别是底部滑动,有效地塑造了地貌。迄今为止,我们对表面碎屑对冰川下方环境的影响知之甚少。为了帮助弥补这一不足,我们进行了数值模型模拟,结果表明,有碎屑覆盖的冰川侵蚀速度比未受碎屑影响的冰川要慢。表面碎屑下融化的减少降低了滑动速度,并导致沉积物在冰床堆积,这可能为冰川跃动创造条件。表面碎屑覆盖层对冰下环境产生的影响,可能对高山地区沉积物的储存和地貌演化具有重大意义。