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桥梁结构疲劳特性分析发展历程与评定设计方法综述 被引量:6
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作者 卢汝生 成彤 王荣辉 《公路交通技术》 2004年第3期49-52,共4页
桥梁结构的疲劳问题是其结构设计中的一个关键问题。本文介绍了从德国人设计第一台疲劳试验机开始研究金属疲劳问题到形成桥梁结构疲劳设计规范整个桥梁结构疲劳特性分析发展历程 ,同时也较详细地介绍了桥梁结构的一般抗疲劳评定方法和... 桥梁结构的疲劳问题是其结构设计中的一个关键问题。本文介绍了从德国人设计第一台疲劳试验机开始研究金属疲劳问题到形成桥梁结构疲劳设计规范整个桥梁结构疲劳特性分析发展历程 ,同时也较详细地介绍了桥梁结构的一般抗疲劳评定方法和抗疲劳设计方法。 展开更多
关键词 桥梁工程 桥梁结构 疲劳分析 评定设计方法 抗疲劳设计
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Probability and reliability analysis of pillar stability in South Africa
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作者 Gaofeng Song Shengli Yang 《International Journal of Mining Science and Technology》 EI CSCD 2018年第4期704-708,共5页
A deterministic approach is frequently used in engineering design. In this quantitative design methodology, a safety factor, which is typically a strength-to-stress ratio, is derived as an index for the stability asse... A deterministic approach is frequently used in engineering design. In this quantitative design methodology, a safety factor, which is typically a strength-to-stress ratio, is derived as an index for the stability assessment of the engineering design. In underground coal mining applications such as pillar design,however, the inputs of pillar design are variables. This is widely overlooked in the deterministic approach. A probabilistic approach assessing the probability of failure or reliability of a system might be an alternative to the conventional quantitative methodology. This approach can incorporate the degree of uncertainty and deviations of variables and provide more versatile and reliable results. In this research, the reliability of case histories from stable and failed pillars of South Africa presented by Merwe and Mathey is examed. The updated Salamon and Munro strength formula(S-M formula) and Merwe and Mathey strength formula(M-M formula) are evaluated through a probabilistic approach. It is concluded that stable pillar cases have a reliability value greater than 0.83 while the reliability value of failed pillar cases are slightly larger than 0.50. There seems to be a positive relation between safety factor and reliability. The reliability of a pillar increases with pillar width but decreases with depth of cover, pillar height and entry width. The reliability analysis also confirms that M-M strength formula has a better distinction between the stable and failed pillar cases. 展开更多
关键词 Pillar design Probabilistic approach RELIABILITY Monte Carlo simulation
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