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Arc-length technique for nonlinear finite element analysis 被引量:9
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作者 MEMONBashir-Ahmed 苏小卒 《Journal of Zhejiang University Science》 EI CSCD 2004年第5期618-628,共11页
Nonlinear solution of reinforced concrete structures, particularly complete load-deflection response, requires tracing of the equilibrium path and proper treatment of the limit and bifurcation points. In this regard, ... Nonlinear solution of reinforced concrete structures, particularly complete load-deflection response, requires tracing of the equilibrium path and proper treatment of the limit and bifurcation points. In this regard, ordinary solution techniques lead to instability near the limit points and also have problems in case of snap-through and snap-back. Thus they fail to predict the complete load-displacement response. The arc-length method serves the purpose well in principle, received wide acceptance in finite element analysis, and has been used extensively. However modifications to the basic idea are vital to meet the particular needs of the analysis. This paper reviews some of the recent developments of the method in the last two decades, with particular emphasis on nonlinear finite element analysis of reinforced concrete structures. 展开更多
关键词 Arc-length method Nonlinear analysis Finite element method Reinforced concrete Load-deflection path Document code: A CLC number: TU31 Arc-length technique for nonlinear finite element analysis* MEMON Bashir-Ahmed# SU Xiao-zu (苏小卒) (Department of Structural Engineering Tongji University Shanghai 200092 China) E-mail: bashirmemon@sohu.com xiaozub@online.sh.cn Received July 30 2003 revision accepted Sept. 11 2003 Abstract: Nonlinear solution of reinforced concrete structures particularly complete load-deflection response requires tracing of the equilibrium path and proper treatment of the limit and bifurcation points. In this regard ordinary solution techniques lead to instability near the limit points and also have problems in case of snap-through and snap-back. Thus they fail to predict the complete load-displacement response. The arc-length method serves the purpose well in principle received wide acceptance in finite element analysis and has been used extensively. However modifications to the basic idea are vital to meet the particular needs of the analysis. This paper reviews some of the recent developments of the method in the last two decades with particular emphasis on nonlinear finite element analysis of reinforced concrete structures. key words: Arc-length method Nonlinear analysis Finite element method Reinforced concrete Load-deflection path
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棉乡杂3号产量构成因素分析及高产栽培措施 被引量:1
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作者 孙长法 田土星 +1 位作者 陈荣江 段芳芳 《河南科技学院学报(自然科学版)》 2014年第4期11-15,共5页
探讨棉乡杂3号的产量构成因素间的相互关系及其对产量的影响效应,为制定该品种的高产栽培措施提供依据.2 a试验结果表明:铃重、衣分的变异较小,它们主要受遗传基因控制,株铃数、公顷铃数有较大变异,表明它们易受环境因素影响;衣分、... 探讨棉乡杂3号的产量构成因素间的相互关系及其对产量的影响效应,为制定该品种的高产栽培措施提供依据.2 a试验结果表明:铃重、衣分的变异较小,它们主要受遗传基因控制,株铃数、公顷铃数有较大变异,表明它们易受环境因素影响;衣分、铃重和公顷铃数均与皮棉产量呈极显著或显著正相关,对皮棉产量的最终效应为:衣分(0.6411**)〉铃重(0.4668**)〉公顷铃数(0.4490**),贡献率相应为49.49%、26.24%、24.27%,以衣分为最大,铃重和公顷铃数分列第2、3位.模拟得出皮棉产量1650-1800 kg/hm2的优化结构:公顷铃数784608-803030个,铃重6.12-6.20 g,衣分41.43%%-41.66%.在高产栽培实践中,以争株铃、增总铃、促铃重、稳衣分为主攻方向,加强管理,促成各因素协调发展,方能实现高产目标. 展开更多
关键词 棉乡杂3 产量因素 高产栽培 模拟产量结构 回归分析 通径分析
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