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有限元数值模拟技术应用于基坑降水设计和结构防浮分析 被引量:11
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作者 傅鑫谊 万力 田家良 《水文地质工程地质》 CAS CSCD 2003年第1期91-93,共3页
利用有限元数值模拟技术进行建筑基坑开挖工程降水设计,在首都机场新航站楼工程中,用此项技术进行基坑降水和结构防浮分析,取得良好了效果。与传统的设计方法相比,该技术具有能适应复杂含水地层,满足不同开挖深度的基坑降水设计,具有全... 利用有限元数值模拟技术进行建筑基坑开挖工程降水设计,在首都机场新航站楼工程中,用此项技术进行基坑降水和结构防浮分析,取得良好了效果。与传统的设计方法相比,该技术具有能适应复杂含水地层,满足不同开挖深度的基坑降水设计,具有全面模拟整个降水过程的水量和水位变化的优点。 展开更多
关键词 有限元数值模拟技术 基坑降水 结构防浮 开挖深度 水量 水位
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Numerical simulation and experimental investigation of incremental sheet forming process 被引量:4
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作者 韩飞 莫健华 《Journal of Central South University of Technology》 EI 2008年第5期581-587,共7页
In order to investigate the process of incremental sheet forming (ISF) through both experimental and numerical approaches, a three-dimensional elasto-plastic finite element model (FEM) was developed to simulate the pr... In order to investigate the process of incremental sheet forming (ISF) through both experimental and numerical approaches, a three-dimensional elasto-plastic finite element model (FEM) was developed to simulate the process and the simulated results were compared with those of experiment. The results of numerical simulations, such as the strain history and distribution, the stress state and distribution, sheet thickness distribution, etc, were discussed in details, and the influences of process parameters on these results were also analyzed. The simulated results of the radial strain and the thickness distribution are in good agreement with experimental results. The simulations reveal that the deformation is localized around the tool and constantly remains close to a plane strain state. With decreasing depth step, increasing tool diameter and wall inclination angle, the axial stress reduces, leading to less thinning and more homogeneous plastic strain and thickness distribution. During ISF, the plastic strain increases stepwise under the action of the tool. Each increase in plastic strain is accompanied by hydrostatic pressure, which explains why obtainable deformation using ISF exceeds the forming limits of conventional sheet forming. 展开更多
关键词 incremental sheet forming (ISF) sheet metal forming numerical simulation finite element method
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