期刊文献+

海冰离散元模型的研究回顾及展望 被引量:18

A REVIEW OF ADVANCES IN SEA-ICE DISCRETE ELEMENT MODELS
在线阅读 下载PDF
导出
摘要 为描述极区及副极区海冰在不同尺度下的离散分布特性,以及海冰与海洋结构相互作用过程中的破碎性能,海冰的离散单元模型从20世纪80年代发展起来并不断完善。将海冰离散单元模型分为地球物理尺度(~100 km)、浮冰块尺度(10—10 000 m)和海洋结构尺度(1—100 m)等3种不同尺度,讨论不同尺度下海冰的离散分布规律或海冰由连续状态向离散状态转化的动力过程。通过对块体、圆盘和颗粒不同形态的海冰离散单元模型的介绍,对其在极区海冰的动力特性、海冰重叠堆积及其与波浪的作用过程、海冰与海洋结构的相互作用中的应用进行分析,对海冰强度的尺度效应进行讨论。最后,讨论海冰离散单元模型中存在的问题和重点研究内容。 To describe the discrete distribution of sea ice on different scales, sea-ice discrete element models have been developed since the 1980s. In this study, sea-ice scales are divided into a geophysical scale ( - 100 km), a floe scale ( - 10 kin), and a structure scale ( -1--100 m). For each scale, the discrete distributions and dynamic processes from continuous to discrete states of sea ice are presented. Sea-ice discrete element models with element shapes of blocks, disks, and particles are introduced. The models' applications in the dynamic characteristics of sea ice in polar regions, the simulation of sea-ice rafting and ridging and the interaction with waves, the interaction between sea ice and structures, and sea-ice mechanical properties modeling are analyzed. Sea-ice strength related to scale effect is discussed. Future studies on sea-ice discret~ t^l~rn^nt m,~AM J
出处 《极地研究》 CAS CSCD 北大核心 2012年第4期315-330,共16页 Chinese Journal of Polar Research
基金 国家海洋公益性行业科研专项经费项目(2012418007 201105016) 国家自然科学基金项目(41176012) 中央高校基本科研业务费专项(DUT12YQ02) 国家海洋局极地考察办公室对外合作支持项目(IC201211)资助
关键词 海冰 离散单元模型 尺度效应 sea ice, discrete element models, scale effect
  • 相关文献

参考文献6

二级参考文献39

  • 1史庆增.海冰的动力作用和冰力谱[J].海洋学报,1994,16(5):106-111. 被引量:12
  • 2史庆增,宋安.海冰静力作用的特点及几种典型结构的冰力模型试验[J].海洋学报,1994,16(6):133-141. 被引量:20
  • 3Selvadurai A P S, ten Busschen A, Ernst L J. Computational models for fragmentation tests [A]. In: Dijksman J F,Nieuwstadt F T M ( Eds. ) Integration of Theory and Applications in Applied Mechanics [ C ]. 2^nd National Mechanies Congress in Netherlands, Topics in Applied Mechanics. Kluwer Academic Publishers, Rolduc, The Netherlands, 1993:97 - 110.
  • 4Selvadurai A P S, ten Busschen A. Mechanics of the segmentation of an embedded fibre-Part Ⅱ : computational modelling and comparison [J]. J. Apple. Mech. ASME, 1995, 62: 98-107.
  • 5Hocking G, Mustoc G G W, Williams J R. Influence of artificial island side-slopes on ice ride-up and pile-up [C].ASCE Specialty Conf., ARCTIC' 85, San Francisco, CA, 1985:185 - 192.
  • 6Hocking G, Mustoc G G W, Williams J R. Validation of the CICE code for ice ride-up and ice ridge cone interaction.ASCE Speciality Conf. ARCTIC' 85, San Francison, CA, 1985:962-970.
  • 7Hopkins M A. Numerical simulation of systems of multitudinous polygonal blocks [ R]. U S Army Corps of Engineers,CRREL Report 92 - 22: 1992.
  • 8Hopkins M A. Onshore ice pile-up: a comparison between experiments and simulation [J]. Cold regions science and technology, 1997, 26: 205-214.
  • 9Wang Y X, Li Z J, Li G W. Technic and application of non-refrigerated model ice [J]. Journal of Dalian Universityof Technology, 2001, 10 (10) : 92 - 99.
  • 10Croasdale K R, Cammaert A B, Metge M. A method for the calculation of sheet ice loads on sloping structures [ C ].IAHR Ice Symposium. Trondheim, Norway, 1994:874 - 885.

共引文献89

同被引文献200

引证文献18

二级引证文献135

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部