期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
条形地基极限承载力的数值极限分析方法
1
作者 唐晓松 郑颖人 +1 位作者 王永甫 王乐 《重庆建筑》 2020年第1期50-53,共4页
数值极限分析方法既有很广的适用性,又有很好的实用性。该文通过有限元荷载增量法和极限应变法计算条形地基的极限承载力,并和传统经验公式的计算结果进行对比分析,验证了数值极限分析方法的可靠性。基于有限元荷载增量法求解地基承载... 数值极限分析方法既有很广的适用性,又有很好的实用性。该文通过有限元荷载增量法和极限应变法计算条形地基的极限承载力,并和传统经验公式的计算结果进行对比分析,验证了数值极限分析方法的可靠性。基于有限元荷载增量法求解地基承载力系数的数值解,可以解决采用经验公式计算可信度不高的问题,并能综合考虑基础宽度和地基土内摩擦角的影响。修正后的地基极限承载力经验公式具有更明确的物理意义,基于数值极限分析方法构建的地基承载力系数取值表格更具实用性和可操作性。 展开更多
关键词 地基极限承载力 数值极限分析方法 承载力系数 修正公式 数值
下载PDF
Safe roof thickness and span of stope under complex filling body 被引量:8
2
作者 罗周全 谢承煜 +2 位作者 贾楠 杨彪 程贵海 《Journal of Central South University》 SCIE EI CAS 2013年第12期3641-3647,共7页
Longhole caving method was used to mine gently inclined thick orebody step by step in a test stope of tin mine under complex filling body. The problem that the complex filling body around the stope affects the stabili... Longhole caving method was used to mine gently inclined thick orebody step by step in a test stope of tin mine under complex filling body. The problem that the complex filling body around the stope affects the stability of roof thickness, chamber and spacer pillar in actual mining was investigated; meanwhile, the formed goaf during mining is so vulnerable that surrounding rock collapses early. Based on this point, elasticity mechanics and limit span theory were used to study separately the roof thickness and the span limit of goaf formed in mining, and then a reasonable roof thickness of 8 m and goaf span of 14 m are proposed. In addition, the stability of roof thickness, chamber and spacer pillar were investigated and analyzed by using numerical analysis method; meanwhile, the field monitoring on the displacement of caving chamber was conducted. The results show that the maximum compressive stress of surrounding rock is 20 MPa, and the maximum tensile stress is 1.2 MPa, which is less than the ultimate tensile strength of 2.4 MPa. Moreover, plastic zone has little influence on stope stability. In addition, the displacement of 11 mm is also smaller. The displacement monitoring results are consistent with the numerical results. Thus, the roof thickness and span of goaf proposed are safe. 展开更多
关键词 complex filling body roof thickness span of goal mechanical analysis numerical analysis
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部