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流体临界状态的热力学性质及临界性质的计算 被引量:4
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作者 杨光智 王黎 许若超 《华北电力大学学报(自然科学版)》 CAS 北大核心 2004年第6期44-46,共3页
从热力学角度分析了超临界流体的临界状态性质,分别介绍了纯流体及混合流体临界性质计算的常用方法,还从临界条件出发,推导出了适合二元物系的计算临界性质的严格算法,并对实际体系进行了计算, 取得了较好的效果。
关键词 临界流体 临界状态性质 热力学性质 临界性质 计算
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Discrete element modeling of sand behavior in a biaxial shear test 被引量:3
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作者 Zhi-yi HUANG Zhong-xuan YANG Zhen-yu WANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2008年第9期1176-1183,共8页
The mechanical behavior of sand is very complex, and depends on factors including confining pressure, density, and drainage condition. A soil mass can be contractive or dilative when subjected to shear loading, and ev... The mechanical behavior of sand is very complex, and depends on factors including confining pressure, density, and drainage condition. A soil mass can be contractive or dilative when subjected to shear loading, and eventually reaches an ultimate state, referred to as the critical state in soil mechanics. Conventional approach to explore the mechanical behavior of sand mainly relies on the experimental tests in laboratory. This paper gives an alternative view to this subject using discrete element method (DEM), which has attracted much attention in recent years. The implementation of the DEM is carried out by a series of numerical tests on granular assemblies with varying initial densities and confining pressures, under different test configurations. The results demonstrate that such numerical simulations can produce correct responses of the sand behavior in general, including the critical state response, as compared to experimental observations. In addition, the DEM can further provide details of the microstructure evolutions during shearing processes, and the resulting induced anisotropy can be fully captured and quantified in the particle scale. 展开更多
关键词 Granular soil behavior Critical state MICROSTRUCTURE Discrete element method (DEM)
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