首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Frictional sliding across Coulombic faults in first‐year sea ice: A comparison with freshwater ice
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Frictional sliding across Coulombic faults in first‐year sea ice: A comparison with freshwater ice

机译:第一年海冰中库仑断层的摩擦滑动:与淡水冰的比较

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Frictional sliding plays a fundamental role in the deformation of the Arctic Ocean ice cover and in ice‐structure interactions. To examine its character, sliding experiments were performed along freshly created Coulombic faults in first‐year S2 sea ice harvested from the Beaufort Sea during the winters of 2003, 2007, and 2009. For comparison, and to complement experiments performed earlier, we also examined freshwater ice of similar microstructure. The principal variables were sliding velocity (from 8 × 10~(-7) m s~(-1) to 4 × 10~(-3) m s~(-1)), temperature (-40°C, -10°C, and -3°C) and normal stress (from 0.02 to 2.7 MPa). Over the ranges explored, the coefficient of friction varies by a factor of four, from ~0.4 to ~1.6. The coefficient for both materials reaches a maximum value at an intermediate velocity, which is an order of magnitude higher for sea ice (~10~(-4) m s~(-1)) than for freshwater ice (~10~(-5) m s~(-1)). At lower velocities, sliding is characterized by velocity strengthening where, for a given velocity, the coefficient of friction of sea ice is lower than that of freshwater ice. At higher velocities, sliding is characterized by velocity weakening, where, for a given velocity, the coefficients of friction for sea ice is closer to that of freshwater ice. Velocity strengthening is explained in terms of creep deformation within contact zones along the fault. Velocity weakening is tentatively attributed to a combination of fracture and localized melting. An implication of stable versus unstable sliding is discussed for sea ice mechanics.
机译:摩擦滑动在北冰洋冰盖的变形和冰与结构的相互作用中起着基本作用。为了检查其特征,在2003年,2007年和2009年的冬季,对从波弗特海收获的第一年S2海冰中新创建的库仑断层进行了滑动实验。为了进行比较,并补充了较早进行的实验,微观结构相似的淡水冰。主要变量是滑动速度(从8×10〜(-7)ms〜(-1)到4×10〜(-3)ms〜(-1)),温度(-40°C,-10°C ,以及-3°C)和法向应力(从0.02到2.7 MPa)。在探索的范围内,摩擦系数从〜0.4到〜1.6变化四倍。两种材料的系数在中间速度时达到最大值,海冰(〜10〜(-4)ms〜(-1))比淡水冰(〜10〜(-5)高一个数量级。 )ms〜(-1))。在较低的速度下,滑动的特征在于速度增强,对于给定的速度,海冰的摩擦系数低于淡水冰的摩擦系数。在较高的速度下,滑动的特征在于速度减弱,对于给定的速度,海冰的摩擦系数更接近淡水冰的摩擦系数。沿断层接触区域内的蠕变变形来解释速度增强。速度减弱暂时归因于断裂和局部熔化的结合。讨论了稳定与不稳定滑动对海冰力学的影响。

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