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节点间含源电路的简化分析法 被引量:3
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作者 滕建辅 赖崎 张洪暄 《天津大学学报(自然科学与工程技术版)》 EI CAS CSCD 北大核心 2003年第5期576-579,共4页
节点分析法是学习分析线性时不变网络以及进行计算机辅助网络分析的基本方法之一.文中将含独立源电路的改进节点分析法,推广到既含独立源又含受控源的电路.计算结果表明,这种方法可以极大地简化含源电路的分析过程.
关键词 电路分析 去源电路 强制电路 节点分析 独立源 受控源 简化分析法
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超大型集装箱船支撑舱壁过渡结构疲劳强度研究
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作者 陈星达 郁惠民 +1 位作者 谢永和 王伟 《浙江海洋大学学报(自然科学版)》 CAS 北大核心 2019年第5期442-446,452,共6页
针对集装箱船大型化所面临的诸多问题,本文就超大型集装箱船支撑式横舱壁处的过渡结构进行疲劳强度研究。以1艘12200 TEU集装箱船为例,利用MSC.Patran进行有限元建模,采用疲劳分析软件MSC.Fatigue进行载荷自动加载,应用简化应力分析法... 针对集装箱船大型化所面临的诸多问题,本文就超大型集装箱船支撑式横舱壁处的过渡结构进行疲劳强度研究。以1艘12200 TEU集装箱船为例,利用MSC.Patran进行有限元建模,采用疲劳分析软件MSC.Fatigue进行载荷自动加载,应用简化应力分析法分别对3种不同结构形式进行疲劳强度的计算,求得了每种结构形式在热点处的累计损伤度和疲劳寿命,并进行比对分析,得到了一种相对更为优秀的结构形式。 展开更多
关键词 集装箱船 支撑舱壁 过渡结构 疲劳强度 简化分析法
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Search for circular and noncircular critical slip surfaces in slope stability analysis by hybrid genetic algorithm 被引量:8
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作者 朱剑锋 陈昌富 《Journal of Central South University》 SCIE EI CAS 2014年第1期387-397,共11页
A local improvement procedure based on tabu search(TS) was incorporated into a basic genetic algorithm(GA) and a global optimal algorithm,i.e.,hybrid genetic algorithm(HGA) approach was used to search the circular and... A local improvement procedure based on tabu search(TS) was incorporated into a basic genetic algorithm(GA) and a global optimal algorithm,i.e.,hybrid genetic algorithm(HGA) approach was used to search the circular and noncircular slip surfaces associated with their minimum safety factors.The slope safety factors of circular and noncircular critical slip surfaces were calculated by the simplified Bishop method and an improved Morgenstern-Price method which can be conveniently programmed,respectively.Comparisons with other methods were made which indicate the high efficiency and accuracy of the HGA approach.The HGA approach was used to calculate one case example and the results demonstrated its applicability to practical engineering. 展开更多
关键词 SLOPE STABILITY genetic algorithm tabu search algorithm safety factor
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Limit equilibrium stability analysis of slopes under external loads 被引量:5
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作者 DENG Dong-ping ZHAO Lian-heng LI Liang 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2382-2396,共15页
Two calculation modes for the effect of external load on slope stability, i.e., mode I in which the external load is thought to act on slope surface, and mode II in which the external load is thought to act on slip su... Two calculation modes for the effect of external load on slope stability, i.e., mode I in which the external load is thought to act on slope surface, and mode II in which the external load is thought to act on slip surface along the force action line, were considered. Meanwhile, four basic distribution patterns of external load were used, of which complex external loads could be composed. In analysis process, several limit equilibrium methods, such as Swedish method, simplified Bishop method, simplified Janbu method, Spencer method, Morgenstern-Price(M-P) method, Sarma method, and unbalanced thrust method, were also adopted to contrast their differences in slope stability under the external load. According to parametric analysis, some conclusions can be obtained as follows:(1) The external load, with the large magnitude, small inclination angle, and acting position close to the slope toe,has more positive effect on slope stability;(2) The results calculated using modes I and II of external load are similar, indicating that the calculation mode of external load has little influence on slope stability;(3) If different patterns of external loads are equivalent to each other, their slope stability under these external loads are the same, and if not, the external load leads to the better slope stability,as action position of the resultant force for external load is closer to the lower sliding point of slip surface. 展开更多
关键词 slope stability calculation mode of external load distribution pattern of external load limit equilibrium slip surface factor of safety (FOS)
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Limit equilibrium method for slope stability based on assumed stress on slip surface 被引量:2
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作者 邓东平 赵炼恒 李亮 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第11期2972-2983,共12页
In the limit equilibrium framework, two- and three-dimensional slope stabilities can be solved according to the overall force and moment equilibrium conditions of a sliding body. In this work, based on Mohr-Coulomb(M-... In the limit equilibrium framework, two- and three-dimensional slope stabilities can be solved according to the overall force and moment equilibrium conditions of a sliding body. In this work, based on Mohr-Coulomb(M-C) strength criterion and the initial normal stress without considering the inter-slice(or inter-column) forces, the normal and shear stresses on the slip surface are assumed using some dimensionless variables, and these variables have the same numbers with the force and moment equilibrium equations of a sliding body to establish easily the linear equation groups for solving them. After these variables are determined, the normal stresses, shear stresses, and slope safety factor are also obtained using the stresses assumptions and M-C strength criterion. In the case of a three-dimensional slope stability analysis, three calculation methods, namely, a non-strict method, quasi-strict method, and strict method, can be obtained by satisfying different force and moment equilibrium conditions. Results of the comparison in the classic two- and three-dimensional slope examples show that the slope safety factors calculated using the current method and the other limit equilibrium methods are approximately equal to each other, indicating the feasibility of the current method; further, the following conclusions are obtained: 1) The current method better amends the initial normal and shear stresses acting on the slip surface, and has the identical results with using simplified Bishop method, Spencer method, and Morgenstern-Price(M-P) method; however, the stress curve of the current method is smoother than that obtained using the three abovementioned methods. 2) The current method is suitable for analyzing the two- and three-dimensional slope stability. 3) In the three-dimensional asymmetric sliding body, the non-strict method yields safer solutions, and the results of the quasi-strict method are relatively reasonable and close to those of the strict method, indicating that the quasi-strict method can be used to obtain a reliable slope safety factor. 展开更多
关键词 two-dimensional slope three-dimensional slope limit equilibrium analysis normal stress shear stress safety factor
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