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Critical slip and time dependence in sea ice friction

机译:海冰摩擦中的临界滑动和时间依赖性

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Recent research into sea ice friction has focussed on ways to provide a model which maintains much of the clarity and simplicity of Amonton's law, yet also accounts for memory effects. One promising avenue of research has been to adapt the rate- and state- dependent models which are prevalent in rock friction. In such models it is assumed that there is some fixed critical slip displacement, which is effectively a measure of the displacement over which memory effects might be considered important. Here we show experimentally that a fixed critical slip displacement is not a valid assumption in ice friction, whereas a constant critical slip time appears to hold across a range of parameters and scales. As a simple rule of thumb, memory effects persist to a significant level for 10 s. We then discuss the implications of this finding for modelling sea ice friction and for our understanding of friction in general.
机译:最近对海冰摩擦的研究集中在提供一个模型的方法上,该模型在很大程度上保持了阿蒙顿定律的清晰度和简单性,同时也说明了记忆效应。一种有前途的研究途径是适应岩石摩擦中普遍存在的速率和状态相关模型。在这样的模型中,假设存在一些固定的临界滑移位移,这实际上是一种位移的量度,在该位移量上记忆效应可能被认为是重要的。在这里,我们通过实验表明,固定的临界滑移位移不是冰摩擦的有效假设,而恒定的临界滑移时间似乎可以在一系列参数和比例范围内保持。作为简单的经验法则,记忆效应会持续持续很长时间达10 s。然后,我们讨论此发现对建模海冰摩擦以及对于我们对摩擦的一般理解的含义。

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