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浙江技术创新源头的结构性和非结构性分析
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作者 吴强军 郭晶 吕品 《浙江社会科学》 CSSCI 2002年第5期39-42,共4页
本文通过对浙江省技术创新源头的结构性分析和非结构性分析 ,得出浙江省技术创新能力较弱不是结构上的问题 ,而是非结构性问题。因此如何解决技术创新的非结构性问题就成为解决浙江技术创新源头建设的关键。
关键词 浙江 非结构性分析 技术创新 结构性差异 企业 技术创新能力 资金 人才 科研体制
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论国外对混合组织理论研究的新发展——一个新制度经济学分析的诠释 被引量:1
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作者 魏玮 《当代经济科学》 CSSCI 北大核心 2005年第3期93-97,111,共6页
新制度经济学的一个新的发展方向是将两个不同的研究方向:制度环境和制度结构的分析有机地统一起来。文章介绍了在这一研究思路下国外的有关研究运用非连续结构性替代分析工具,既分析了混合经济组织的制度结构特征,指出了混合经济组织... 新制度经济学的一个新的发展方向是将两个不同的研究方向:制度环境和制度结构的分析有机地统一起来。文章介绍了在这一研究思路下国外的有关研究运用非连续结构性替代分析工具,既分析了混合经济组织的制度结构特征,指出了混合经济组织的边界,又分析了产权、契约法、声誉效应以及不确定性等制度环境因素对混合经济组织的影响。 展开更多
关键词 连续结构性替代分析 治理结构成本 混合组织的边界
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Application of 1D/3D finite elements coupling for structural nonlinear analysis 被引量:13
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作者 岳健广 A.Fafitis +1 位作者 钱江 雷拓 《Journal of Central South University》 SCIE EI CAS 2011年第3期889-897,共9页
An element coupling model (ECM) method was proposed to simulate the global behavior and local damage of a structure.In order to reflect the local damage and improve the computational efficiency,three-dimensional (3D) ... An element coupling model (ECM) method was proposed to simulate the global behavior and local damage of a structure.In order to reflect the local damage and improve the computational efficiency,three-dimensional (3D) solid elements and one-dimensional (1D) beam element were coupled by the multi-point constraint equations.A reduced scale 1?8 model test was simulated by the ECM and a full three dimensional model (3DM) contrastively.The results show that the global behavior and local damages of ECM agree well with the test and 3DM.It is indicated that the proposed method can be used in the structural nonlinear analysis accurately and efficiently. 展开更多
关键词 elements coupling model global behavior local damage multi-point constraint equations nonlinear analysis
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Progressive collapse resisting capacity of reinforced concrete load bearing wall structures 被引量:1
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作者 Alireza Rahai Alireza Shahin Farzad Hatami 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2730-2738,共9页
Reinforced concrete(RC) load bearing wall is widely used in high-rise and mid-rise buildings. Due to the number of walls in plan and reduction in lateral force portion, this system is not only stronger against earthqu... Reinforced concrete(RC) load bearing wall is widely used in high-rise and mid-rise buildings. Due to the number of walls in plan and reduction in lateral force portion, this system is not only stronger against earthquakes, but also more economical. The effect of progressive collapse caused by removal of load bearing elements, in various positions in plan and stories of the RC load bearing wall system was evaluated by nonlinear dynamic and static analyses. For this purpose, three-dimensional model of 10-story structure was selected. The analysis results indicated stability, strength and stiffness of the RC load-bearing wall system against progressive collapse. It was observed that the most critical condition for removal of load bearing walls was the instantaneous removal of the surrounding walls located at the corners of the building where the sections of the load bearing elements were changed. In this case, the maximum vertical displacement was limited to 6.3 mm and the structure failed after applying the load of 10 times the axial load bored by removed elements. Comparison between the results of the nonlinear dynamic and static analyses demonstrated that the "load factor" parameter was a reasonable criterion to evaluate the progressive collapse potential of the structure. 展开更多
关键词 reinforced concrete(RC) load bearing wall structure progressive collapse fiber sections nonlinear analysis load factor method
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Nonlinear dynamic response analysis of supercavitating vehicles 被引量:1
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作者 麻震宇 林明东 +1 位作者 胡凡 张为华 《Journal of Central South University》 SCIE EI CAS 2012年第9期2502-2513,共12页
A finite element model for the supercavitating underwater vehicle was developed by employing 16-node shell elements of relative degrees of freedom.The nonlinear structural dynamic response was performed by introducing... A finite element model for the supercavitating underwater vehicle was developed by employing 16-node shell elements of relative degrees of freedom.The nonlinear structural dynamic response was performed by introducing the updated Lagrangian formulation.The numerical results indicate that there exists a critical thickness for the supercavitating plain shell for the considered velocity of the vehicle.The structure fails more easily because of instability with the thickness less than the critical value,while the structure maintains dynamic stability with the thickness greater than the critical value.As the velocity of the vehicle increases,the critical thickness for the plain shell increases accordingly.For the considered structural configuration,the critical thicknesses of plain shells are 5 and 7 mm for the velocities of 300 and 400 m/s,respectively.The structural stability is enhanced by using the stiffened configuration.With the shell configuration of nine ring stiffeners,the maximal displacement and von Mises stress of the supercavitating structure decrease by 25% and 17% for the velocity of 300 m/s,respectively.Compared with ring stiffeners,longitudinal stiffeners are more significant to improve structural dynamic performance and decrease the critical value of thickness of the shell for the supercavitating vehicle. 展开更多
关键词 supercavitating vehicle shell element of relative degrees of freedom nonlinear finite element dynamic response
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