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台北盆地构造特征
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作者 张进 马宗晋 王乾盈 《吉林大学学报(地球科学版)》 EI CAS CSCD 北大核心 2005年第1期21-26,共6页
台北盆地发育在弧陆碰撞的背景下,但长期以来对其构造特征一直认识不清,因此直接影响对盆地形成的认识。钻井、地震勘探等资料研究表明,山脚断层是控制盆地形成的主要正断层,而不是走滑断层,但并不是一条完整的正断层,而是由三个段落组... 台北盆地发育在弧陆碰撞的背景下,但长期以来对其构造特征一直认识不清,因此直接影响对盆地形成的认识。钻井、地震勘探等资料研究表明,山脚断层是控制盆地形成的主要正断层,而不是走滑断层,但并不是一条完整的正断层,而是由三个段落组成。各个段落控制一个沉积中心,彼此之间没有沟通。沉积中心的变化反映出山脚断层活动的各段落活动性并不一样,向北东方向随时间逐渐增强,目前最为活动的集中在中段和北段,南段已经停止活动。研究表明盆地中发育的一些北西向正断层是盆地中不同沉降中心沉降时的次生断层,而很难用走滑体系来解释。台北盆地并不是一个孤立发育的盆地,盆地是与金山断层东南的大屯火山群一同陷落的,具有一致的地球物理场背景、沉降规模以及正断层活动,因此广义的台北盆地从沉降范围和机制上还包括金山断层以南的大屯火山群。台北盆地的这些特征表明该盆地并不是走滑体系中形成的拉分盆地。 展开更多
关键词 台北盆地 山脚断层 新庄断层 板桥组 五股 景美 松山
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Fatigue behaviour of welded joints assembled by longitudinal corrugated plates 被引量:2
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作者 王志宇 王清远 +1 位作者 刘永杰 孙美 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2752-2760,共9页
Fatigue is usually the cause for the cracks identified at bridge elements in service. With an increase in the introduction of corrugated steel web girders in recent highway bridge construction, the understanding of th... Fatigue is usually the cause for the cracks identified at bridge elements in service. With an increase in the introduction of corrugated steel web girders in recent highway bridge construction, the understanding of the fatigue behaviour of welded details in such structures becomes an important issue for the design. The typical welded details were represented as welded joints assembled by longitudinal corrugated plates. All the experiments were performed under fatigue loading using a servo-control testing machine. The test results from the failure mode observation with the aid of infrared thermo-graph technology show that the failure manner of these welded joints is comparable to that of the corrugated steel web beams reported previously. It is indicated from the stiffness degradation analysis that the welded joints with larger corrugation angle have higher stiffness and greater stiffness degradation in the notable stiffness degradation range. It is shown from the test S-N relations based on the free regression and forced regression analyses that there is a good linear dependence between lg(N) and lg(ΔS). It is also demonstrated that the proposed fracture mechanics analytical model is able to give a prediction slightly lower but on the safe side for the mean stresses at 2 million cycles of the test welded joints. 展开更多
关键词 corrugated web fatigue behaviour S-N relation stiffness degradation fracture mechanics
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Improved methods for decreasing stresses of concrete slab of large-span through tied-arch composite bridge 被引量:2
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作者 周德 叶梅新 罗如登 《Journal of Central South University》 SCIE EI CAS 2010年第3期648-652,共5页
Mechanical behavior of concrete slab of large-span through tied-arch composite bridge was investigated by finite element analysis (FEA). Improved methods to decrease concrete stresses were discussed based on compariso... Mechanical behavior of concrete slab of large-span through tied-arch composite bridge was investigated by finite element analysis (FEA). Improved methods to decrease concrete stresses were discussed based on comparisons of different deck schemes, construction sequences and measures, and ratios of reinforcement. The results show that the mechanical behavior of concrete slab gets worse with the increase of composite regions between steel beams and concrete slab. The deck scheme with the minimum composite region is recommended on condition that both strength and stiffness of the bridge meet design demands under service loads. Adopting in-situ-place construction method, concrete is suggested to be cast after removing the full-supported frameworks under the bridge. Thus, the axial tensile force of concrete slab caused by the first stage dead load is eliminated. Preloading the bridge before concrete casting and removing the load after the concrete reaching its design strength, the stresses of concrete slab caused by the second stage dead load and live load are further reduced or even eliminated. At last, with a high ratio of reinforcement more than 3%, the concrete stresses decrease obviously. 展开更多
关键词 composite bridge concrete slab tension through tied-arch large span finite element method
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