In order to study an isolation system of rolling friction with springs, computer programs were compiled to evaluate the seismic performance based on its movement characteristics. Through the programs, the influences o...In order to study an isolation system of rolling friction with springs, computer programs were compiled to evaluate the seismic performance based on its movement characteristics. Through the programs, the influences of various seismic performance factors, e.g., rolling friction coefficient, spring constant, were systematically investigated. Results show that by increasing the rolling friction coefficient, the structural relative displacement due to seismic load effectively decreases, while the structural response magnitude varies mainly depending on the correlations between the following factors: the spring constant, the earthquake intensity, and the rolling friction coefficient. Furthermore, increasing the spring constant can decrease the structural relative displacement, as well as residual displacement, however, it increases the structural response magnitude. Finally, based on the analyses of various seismic performance factors subjected to the scenario earthquakes, optimized theoretical seismic performance can be achieved by reasonably combining the spring constant and the rolling friction coefficient.展开更多
研究采用Struts2+Hibernate3+Spring2组合架构搭建物流数据交换平台的方法与技术。该组合架构综合应用了Struts2的模型-视图-控制器MVC(Model-View-Controller)设计模式,Hibernate3的对象-关系映射O-R映射(Object-Relation Mapping)工具...研究采用Struts2+Hibernate3+Spring2组合架构搭建物流数据交换平台的方法与技术。该组合架构综合应用了Struts2的模型-视图-控制器MVC(Model-View-Controller)设计模式,Hibernate3的对象-关系映射O-R映射(Object-Relation Mapping)工具,Sprng2的控制反转IoC(Inversion of Control)管理功能,提出了集成的策略,并在现代物流实验室进行了集成应用。展开更多
基金Project(51308549)supported by the National Natural Science Foundation,China
文摘In order to study an isolation system of rolling friction with springs, computer programs were compiled to evaluate the seismic performance based on its movement characteristics. Through the programs, the influences of various seismic performance factors, e.g., rolling friction coefficient, spring constant, were systematically investigated. Results show that by increasing the rolling friction coefficient, the structural relative displacement due to seismic load effectively decreases, while the structural response magnitude varies mainly depending on the correlations between the following factors: the spring constant, the earthquake intensity, and the rolling friction coefficient. Furthermore, increasing the spring constant can decrease the structural relative displacement, as well as residual displacement, however, it increases the structural response magnitude. Finally, based on the analyses of various seismic performance factors subjected to the scenario earthquakes, optimized theoretical seismic performance can be achieved by reasonably combining the spring constant and the rolling friction coefficient.
基金国家自然科学基金(the National Natural Science Foundation of China under Grant No.60273092)国家重点基础研究发展规划(973)(the National Grand Fundamental Research 973 Program of China under Grant No.2003CCA02800)江西师大青年成长基金资助
文摘研究采用Struts2+Hibernate3+Spring2组合架构搭建物流数据交换平台的方法与技术。该组合架构综合应用了Struts2的模型-视图-控制器MVC(Model-View-Controller)设计模式,Hibernate3的对象-关系映射O-R映射(Object-Relation Mapping)工具,Sprng2的控制反转IoC(Inversion of Control)管理功能,提出了集成的策略,并在现代物流实验室进行了集成应用。