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PRELIMINARY MODELING OF ICE FAILURE ON CONES DUE TO EDGE SHEAR

机译:边缘剪切导致的圆锥上的冰破坏的初步建模

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摘要

Recent model tests at the Institute for Ocean Technology (IOT) showed that the influence of shear stresses on determining failure modes during ice-cone interactions becomes more important with increase of ice velocity and is finally predominant for large cone angles and thick ice with the ice edge failing predominately in shear mode. The same shear failure mode has been observed as the dominant failure mode of freshwater ice during the ice/cone interaction experiments conducted in C-CORE's centrifuge. This paper identifies the salient features associated with the shear failure process. A simple conceptual model was proposed for future model developments. This model incorporated the concepts of non-simultaneous ice/cone contact and failure process, rotation of the ice edge and the size of the failure zone. Predictions from the model compare well with measurements from the model tests.
机译:海洋技术研究所(IOT)的最新模型测试表明,冰锥相互作用期间,剪切应力对确定破坏模式的影响随着冰速的增加而变得更加重要,并且最终对于较大的锥角和厚冰伴随着冰边缘在剪切模式下主要失效。在C-CORE离心机进行的冰​​/锥相互作用实验中,已观察到与淡水冰的主要破坏模式相同的剪切破坏模式。本文确定了与剪切破坏过程相关的显着特征。为将来的模型开发提出了一个简单的概念模型。该模型包含了非同步的冰/锥接触和破坏过程,冰边缘旋转和破坏区域大小的概念。来自模型的预测与来自模型测试的测量结果很好地比较。

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