...
首页> 外文期刊>Journal of Glaciology >Soft-bed experiments beneath Engabreen, Norway: regelation infiltration, basal slip and bed deformation
【24h】

Soft-bed experiments beneath Engabreen, Norway: regelation infiltration, basal slip and bed deformation

机译:挪威恩加布里恩(Engabreen)下方的软床实验:胶凝渗透,基底滑移和床变形

获取原文
获取原文并翻译 | 示例
           

摘要

To avoid some of the limitations of studying soft-bed processes through boreholes, a prism of simulated till (1.8 m x 1.6 m x 0.45 m) with extensive instrumentation was constructed in a trough blasted in the rock bed of Engabreen, a temperate glacier in Norway. Tunnels there provide access to the bed beneath 213 m of ice. Pore-water pressure was regulated in the prism by pumping water to it. During experiments lasting 7-12 days, the glacier regelated downward into the prism to depths of 5080 mm, accreting ice-infiltrated till at rates predicted by theory. During periods of sustained high pore-water pressure (70-100% of overburden), ice commonly slipped over the prism, due to a water layer at the prism surface. Deformation of the prism was activated when this layer thinned to a sub-millimeter thickness. Shear strain in the till was pervasive and decreased with depth. A model of slip by ploughing of ice-infiltrated till across the prism surface accounts for the slip that occurred when effective pressure was sufficiently low or high. Slip at low effective pressures resulted from water-layer thickening that increased non-linearly with decreasing effective pressure. If sufficiently widespread, such slip over soft glacier beds, which involves no viscous deformation resistance, may instigate abrupt increases in glacier velocity.
机译:为避免通过钻孔研究软床过程的某些局限性,在挪威温带冰川Engabreen岩床中爆破的一个水槽中建造了一个带有模拟仪器的模拟井(1.8 m x 1.6 m x 0.45 m)的棱镜。那里的隧道可通往213 m冰以下的床。通过向棱镜中抽水来调节棱镜中的孔隙水压力。在历时7-12天的实验过程中,冰川向下凝结成棱柱状,深度达到5080毫米,并以理论所预测的速率吸收了冰的渗透。在持续的高孔隙水压力(覆盖层的70-100%)期间,由于棱镜表面的水层,冰通常会滑过棱镜。当该层变薄至亚毫米厚时,棱镜的变形被激活。耕till中的剪切应变无处不在,并随着深度的增加而减小。通过耕作渗入冰直至穿过棱镜表面的滑移模型解释了有效压力足够低或足够高时发生的滑移。低有效压力下的滑移是由水层增厚导致的,该增厚随有效压力的降低而非线性增加。如果足够广泛,则这种不涉及粘性变形阻力的软冰川床的滑移可能会促使冰川速度突然增加。

著录项

相似文献

  • 外文文献
  • 专利
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