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The response of ice cover to a load moving along a frozen channel

机译:冰盖对沿冻结通道移动的载荷的响应

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Deflections and stresses in an ice cover of a frozen channel caused by a load moving with a constant speed along the channel are studied. The channel is of rectangular cross section. The ice cover is isotropic and clamped to the walls of the channel. The fluid in the channel is inviscid and incompressible. The external load is modeled by a localized smooth pressure distribution moving along the central line of the channel. The ice cover is modeled as a viscoelastic plate. Deflection of the ice and strains in the ice plate are independent of time in the coordinate system moving together with the load. The effect of the channel walls on the ice response is studied. This effect can be significant in experiments with loads moving in ice tanks. The linear hydroelastic problem is solved by using the Fourier transform along the channel and the method of normal modes across the channel. It is found that the presence of the vertical walls of the channel reduces the ice deflection but increases the elastic strains in the ice plate. The effects of the load speed, width and depth of the channel on the hydroelasticresponse of the ice cover are studied in detail. In contrast to the problem of a load moving on ice sheets of infinite extent, there are infinitely many critical speeds of hydroelastic waves in a frozen channel. Correspondingly, there are many values of the speeds of a moving load at which the stresses in the ice cover are amplified. The obtained deflections and strains in the canned ice cover are compared with the corresponding solutions for the infinite ice plate and with the solutions of simplified problems without account for the dynamic component of the liquid pressure. It is shown that the models of ice response without hydrodynamic component of the pressure provide correct stresses in the ice sheet only for very low speeds of the moving load. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了以恒定速度沿通道运动的载荷在冻结通道的冰盖中产生的变形和应力。通道具有矩形横截面。冰盖是各向同性的,并固定在通道壁上。通道中的流体不粘且不可压缩。外部载荷通过沿通道中心线移动的局部平滑压力分布建模。冰盖被建模为粘弹性板。冰的变形和冰板中的应变与随载荷一起移动的坐标系中的时间无关。研究了通道壁对冰响应的影响。在负载在冰罐中移动的实验中,此效果可能非常重要。通过使用沿通道的傅立叶变换和跨通道的法线模式的方法,可以解决线性水弹性问题。已经发现,通道的竖直壁的存在减小了冰的偏转,但是增加了冰板中的弹性应变。详细研究了加载速度,通道宽度和深度对冰盖水弹性响应的影响。与载荷在无限大的冰盖上移动的问题相反,在冻结通道中存在无限多的水弹性波临界速度。相应地,移动载荷的速度有很多值,在该速度下,冰盖中的应力被放大。将罐装冰盖中获得的挠度和应变与无限冰板的相应解决方案以及简化问题的解决方案进行比较,而无需考虑液体压力的动态分量。结果表明,没有压力流体动力分量的冰响应模型仅在极低的移动载荷速度下才在冰盖中提供正确的应力。 (C)2016 Elsevier Ltd.保留所有权利。

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