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细粒酒精模型冰的弯曲强度试验研究
引用本文:李志军,RISKA Kaj.细粒酒精模型冰的弯曲强度试验研究[J].海洋与湖沼,1999,30(6):695-700.
作者姓名:李志军  RISKA Kaj
作者单位:国家海洋环境监测中心;大连理工大学海岸和近海工程国家重点实验室!大连116024(李志军),赫尔辛基理工大学北极近海研究中心!芬兰爱斯堡02150(RISKAKaj)
基金项目:国家海洋局青年海洋科学基金!96-505,国家教委重点科技项目!97-87
摘    要:基于不同制冰条件和工的细粒酒精模型冰层原位悬臂弯曲强度试验,给出细料酒精模型冰弯曲强度;分析了考虑和不考虑不浮力效应对弯曲强度的差异;利用向睡向下弯曲强度结果给出该模型冰各向同性的证据;得到该冰弯曲强度与其密度、冰内未冻液含量和制冷过程可控制因子的关系,并作为定量控制模型冰质量的基础。

关 键 词:细粒酒精模型冰  弯曲强度  试验研究  海冰
收稿时间:1997/10/30 0:00:00
修稿时间:1998/2/10 0:00:00

EXPERIMENTAL STUDY ON THE FLEXURAL STRENGTH OF FINE GRAIN ETHANOL MODEL ICE
LI Zhi-jun and RISKA Kaj.EXPERIMENTAL STUDY ON THE FLEXURAL STRENGTH OF FINE GRAIN ETHANOL MODEL ICE[J].Oceanologia Et Limnologia Sinica,1999,30(6):695-700.
Authors:LI Zhi-jun and RISKA Kaj
Institution:National Marine Environmental Monitoring Center; Dalian University of Technology, 116024;Helsinki University of Technology, FIN 02150, Espoo, Finland
Abstract:The fine grain ethanol model ice, used in the Arctic Offshore Researeh Centre (AORC),Ship Laboratory, Helsinki University of Technology, is of intemational standar for medeling intenstions between model ice and structures (ships). on of the importan laboratory simulation results is concemed with the model ice proprties. For the intoractions with inclined structures and ships, such as cone man-made islands, lighter towers, wave dams and ice-breakers, model ice flexural strength is one of the dominant fastors. A series of experimental studies have revealed the physical and mechanical properties of fine grain ethanol model ice and their relations to the known ice-making conditions (i.e. air temperature in ice basin, hme periods of decreasing and increasing air tomperabe, and model ice thickness) and yielded a new index, . t/ h2 based on the energy balance. This paper presents the experimental study theory, method and resultS on the fine grain ethanol model ice fiexural strength. The effects of buoancy, loading rates and loading directions on the model ice cantilever beam flexural strength are discussed. The authrs' findings tha flexural sbengths lowhng downwards and upwards are neary the same (the homogeneity of the fine grain model ice) are confirmed- The processes affecting the sbength with loading rates are similar to those for the natural sea ice in the Bohai Sea. The effect of buoyancy on the sbength is smaller than the error which comes from tested data- The flexural strength depends on its physical proprties, and decreases with ice density, the increasing of unfrozen solution in the ice, and the increase in the new evaluation index. From energy balance, the lereer the index is, the more the unfrozen solution in the ice is, and the higher the ice density.
Keywords:Fine grain ethanol model ice Flexural strengths Experimental study
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