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Laboratory experiments on floating saline ice block breakage in ice-to-ice contact

机译:浮冰冰块浮动盐水冰块破碎的实验室实验

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摘要

This study uses a unique experimental system to explore the breakage of laboratory-grown, floating saline ice blocks under ice-to-ice contacts. This topic is important to the understanding and modeling of force transmission through ice rubble fields. In a collection of ice blocks subjected to compressive loading, force is transmitted via force chains, and their stability plays a crucial role in ice-structure interaction processes. Peak loads are limited by the buckling of these force chains or breakage at the ice block contacts. Lack of information on the breakage mechanism motivates the present effort. In the experiments, three ice blocks were set up to form two ice-to-ice contacts, after which the three-block system was compressed to failure. The force transmitted through each contact and the failure process of the blocks were recorded. In total 32 tests with varying contact areas were performed. In about 75% of the cases, the load transmitted by an ice-to-ice contact was limited by shear failure. The key property limiting the magnitude of the force transmitted by an ice-to-ice contact was found to be shear strength; blocks typically failed in shear on planes having the characteristics of ‘Coulombic shear faults’. Quasi-static force equilibrium analysis of these shear failures showed that the floating ice blocks with a naturally occurring temperature gradient used in this study had a shear strength of 279 kPa. Other failure modes, including crushing, splitting and ‘Y-shaped’ conjugate failure, were occasionally observed.
机译:本研究采用独特的实验系统来探索实验室生长的浮动盐水冰块在冰冰触点下的破损。这一话题对于通过冰块字段的理解和建模力传输的理解和建模很重要。在经过压缩负载的冰块的集合中,通过力链传递力,并且它们的稳定性在冰结构相互作用过程中起着至关重要的作用。峰值负荷受到冰块触点的这些力链或破损的限制。缺乏关于破损机制的信息激励了现在的努力。在实验中,建立了三个冰块以形成两个冰冰触点,之后三块系统被压缩成失败。记录通过每个触点传输的力和块的故障过程。总共进行32个具有不同接触区域的测试。在大约75%的病例中,冰冰接触传递的负荷受剪切失效的限制。限制限制冰冰触点传递的力幅度的关键属性是剪切强度;块通常在具有“库仑剪切故障”特征的平面上的剪切失败。这些剪切故障的准静态力平衡分析表明,该研究中使用的具有天然存在的温度梯度的浮冰块具有279kPa的剪切强度。偶尔观察到其他故障模式,包括破碎,分裂和'Y形缀合物失败。

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