首页> 外文会议>International conference on port and ocean engineering under arctic conditions >RUBBLE ICE TRANSPORT ON ARCTIC OFFSHORE STRUCTURES (RITAS), PART Ⅱ: 2D SCALE-MODEL STUDY OF THE LEVEL ICE ACTION
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RUBBLE ICE TRANSPORT ON ARCTIC OFFSHORE STRUCTURES (RITAS), PART Ⅱ: 2D SCALE-MODEL STUDY OF THE LEVEL ICE ACTION

机译:北极海上结构(RITAS)上的瓦砾冰运,第Ⅱ:2D型冰行动规模模型研究

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A model scale experiment on the interaction between level ice and an arctic offshore structure with a downward bending hull was conducted in April 2012 in the large ice tank of HSVA. The experiments investigate the different mechanical processes contributing to the ice action. The present paper is completed by a companion paper "Rubble Ice Transport on Arctic Offshore Structures (RITAS), part I: Model scale investigation of level ice action mechanisms". Detailed investigations on special aspects of the level ice action mechanisms are presented in "Rubble Ice Transport on Arctic Offshore Structures (RITAS), part III: Analysis of scale model rubble ice stability" and "Rubble Ice Transport on Arctic Offshore Structures (RITAS), part IV Tactile sensor measurement of the level ice load on inclined plate". The structure, a so called buoyancy box, is inclined at the waterline and promotes a downward bending failure of the level ice. Two-dimensionality is introduced by limiting the panel width to 1 meter with two transparent Lexan plates allowing monitoring of the ice breaking and accumulation process. Several parameters are varied: ice thickness, ice density, ice velocity. A tactile sensor is installed on the ice breaking area of the structure to monitor the local waterline ice loads. During each interaction tests, the volume and buoyancy of the rubble accumulated on the structure are measured for derivation of the rubble porosity. The waterline ice load is oscillating. The experimental results show that the magnitude of the load peaks increases. The rubble is subjected to a rotating motion and to a series of collapse events. Increased buoyancy forces reduce the rubble porosity.
机译:2012年4月在HSVA的大型冰箱中进行了水平冰与北极海上结构与北极海上结构相互作用的模型规模试验。实验研究了有助于冰动作的不同机械过程。本文件由伴侣纸“北极海上结构(RITAS),第一部分:水平冰动作机制的模型规模调查”。详细研究水平冰动作机制的特殊方面的详细调查介绍了“北极海上结构(RITAS),第二部分:规模模型瓦砾稳定性分析”和“北极海上结构(RITAS)的瓦砾冰运,倾斜板上的液位冰负荷的局部触觉传感器测量“。该结构,所谓的浮力箱,倾斜在水线上,促进水平冰的向下弯曲失效。通过将面板宽度限制为1米,使用两个透明的Lexan板来引入二维性,允许监测冰破碎和积累过程。多种参数变化:冰厚,冰密度,冰速。触觉传感器安装在结构的冰破碎区域,以监测局部水线冰负荷。在每个相互作用试验期间,测量堆积在结构上的瓦砾的体积和浮力以导出瓦砾孔隙率。水线冰负荷振荡。实验结果表明,负载峰值的大小增加。瓦砾经受旋转运动并达到一系列折叠事件。增加的浮力力降低了瓦砾孔隙率。

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