极地冰川跑道动载下冰材料热液效应研究

IF 6.5 2区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY
Zhiyuan Wang , Shengrong Zhang , Ze Zhang , Chunlei Xie , Kunchao Zhou , Mingyang Yuan
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引用次数: 0

摘要

极地科学考察中的冰运问题是一个非常重要的问题。为了给极地冰川跑道提供研究依据,本文将飞机在冰川跑道上运行所产生的载荷近似为动载荷,并以环境温度和载荷频率为试验变量,研究动载荷作用下冰面内温度和水分的变化。结果表明:受动载荷的影响,冰试试样在升温阶段和降温阶段存在交替竞争的现象,且试件不同深度处存在温差;在加载频率较慢的B、C两组中,水的迁移量主要随试样温度的变化而变化。在加载频率较快的A组试验中,发现试验过程中温度波动较小,但水迁移量增加。最后,从由冰和水组成的基本单元(O:H-O)氢键压缩弛豫的角度对实验结果进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the hydrothermal effect in ice materials under the polar glacier runway dynamic load
The problem of ice transportation during the polar scientific expedition is very important. In order to provide a research basis for the glacier runway in the polar region, this paper approximates the load generated by the aircraft running on the glacier runway as a dynamic load, and uses the ambient temperature and load frequency as test variables to study the variation of temperature and moisture in the ice under dynamic load. The results show that due to the influence of dynamic load, the ice test sample has the phenomenon of alternating competition between the temperature rise stage and the temperature drop stage, and there is a temperature difference at different depths of the test sample. In the two groups of B and C with slower load frequency, the amount of water migration mainly changes with the temperature change in the test sample. In the group A test with faster load frequency, it was found that the temperature fluctuation was small during the test, but the amount of water migration increased. Finally, the experimental results are discussed from the perspective of hydrogen bond compression relaxation of the basic unit (O:H-O) composed of ice and water.
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来源期刊
CiteScore
7.60
自引率
19.40%
发文量
842
审稿时长
63 days
期刊介绍: Case Studies in Construction Materials provides a forum for the rapid publication of short, structured Case Studies on construction materials. In addition, the journal also publishes related Short Communications, Full length research article and Comprehensive review papers (by invitation). The journal will provide an essential compendium of case studies for practicing engineers, designers, researchers and other practitioners who are interested in all aspects construction materials. The journal will publish new and novel case studies, but will also provide a forum for the publication of high quality descriptions of classic construction material problems and solutions.
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