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国家自然科学基金(50679079)

作品数:2 被引量:18H指数:2
相关作者:孙晓燕游亚戈刘荣更多>>
相关机构:中国科学技术大学中国科学院更多>>
发文基金:国家自然科学基金中国科学院可再生能源与天然气水合物重点实验室开放基金国家高技术研究发展计划更多>>
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Research on unloading nonlinear mechanical characteristics of jointed rock masses被引量:16
2010年
Geological environments of rock mass projects are always very complicated, and further investigations on rock mechanical characteristics are needed. There are considerable distinctions in rock mechanical characteristics under unloading and loading conditions. A series of tests are conducted to study the stress-strain relationship of rock masses under loading and unloading conditions. Also, the anisotropy, the size effect, and the rheological property of unloading rock mass are investigated. The tests presented in the paper include model test and granite rheological test, which are conducted considering geological condition, rock mass structure, in-situ stress field of the permanent shiplock of the Three Gorges Project. The main differences between loading and unloading rock masses are stress paths, yield criteria, deformation and strength parameters, etc.. Different structural plane directions affect unloading rock mass evidently. With increasing size, the tensile strength, the compressive strength, the deformation modulus, the Poisson’s ratio and the anisotropy of rock mass all decrease. For sandstone samples with parallel bedding planes, the cohesion c increases but the internal friction angle ? decreases under unloading condition when compared with the values under loading condition. While for samples with vertical bedding planes, the trend is adverse. The rheological property of rocks has close relationship with the tensile stresses of rock masses. When the sandstone samples are tested under high stress condition, their rheological properties are very obvious with the unloading of confining pressure, and three typical rheological stages are shown. Rheological rate changes with the variations in axial stress and confining pressure.
Jianlin LiLehua WangXingxia WangRuihong WangZhuang ChengLi Dang
复杂二维区域有限元网格自适应生成方法被引量:2
2008年
在结合推进波前法和法向偏移法各自的优势的基础上,提出了新的网格自动自适应生成方法。采用预先检查节点距离的方式,显著地提高了网格生成的效率和可靠性。利用中间过程点的网格尺寸信息改进了生成节点的迭代公式,使得节点的生成更为迅速,并有效地提高了单元质量。密度控制方式独立于网格生成算法,控制灵活,便于采用纯数学手段来控制网格的疏密分布,能有效地实现自适应。
刘荣游亚戈孙晓燕
关键词:计算机应用网格生成有限元方法密度控制
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