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1)  Continuous rigid frame bridge
连续刚构桥梁
1.
Construction monitoring and control of continuous rigid frame bridge
连续刚构桥梁的施工监测与控制
2.
Taking the reinforcement engineering of Hanjiang bridge in Guanmiao town of Ankang city for instance,the key technologies of every tache such as test,design,construction and monitoring of external prestressed reinforcement method of continuous rigid frame bridge are introduced,which accumulates valuable experiences for the reinforcement of long-span continuous rigid frame bridge.
以安康关庙汉江大桥加固工程为例,介绍连续刚构桥梁体外预应力加固法的检测、设计、施工、监控等各个环节的关键技术,可为大跨径连续刚构桥梁的加固积累宝贵的经验。
2)  continuous rigid-framed bridge
连续刚构桥梁
1.
The semi-active control effect calculation and analysis are performed on a four span continuous rigid-framed bridge under seismic travelling waves with different apparent surface velocities,and comparison is made between the calculating results in this case and those under uniform ground motion input.
给出了地震行波输入下大跨度桥梁的半主动控制分析方法,对一座四跨连续刚构桥梁进行了具有不同视波速的行波输入下的半主动控制计算分析,并与地震动一致输入下的计算结果进行比较。
2.
The seismic response calculation for a four span continuous rigid-framed bridge under seismic traveling-wave inputs is performed.
给出了地震行波输入下大跨度桥梁的主动、半主动和被动控制分析方法,并对1座4跨连续刚构桥梁进行了行波输入下地震反应计算,分析了8种振动控制情况下纵桥向和横桥向地震反应的减震效果。
3)  continuous rigid frame bridge
连续刚构梁桥
1.
Preliminary research on the cause of the cracks in thin-walled flexible piers of continuous rigid frame bridges;
连续刚构梁桥薄壁柔性墩身裂缝产生原因
2.
With continuous rigid frame bridge span increasing,cantilever construction of large tonnage anchor are also becoming more common,but local stress distribution is complicated on prestressed anchorage zone of thin concrete box girder webs by the large tonnage,which reveals its distribution of post-tensioned concrete bridge structure to be solved in the future.
随着连续刚构梁桥跨度越来越大,悬臂施工中大吨位预压力锚固的应用也越来越普遍,但是大吨位预应力锚固区薄壁混凝土箱梁承压局部应力分布复杂,通过对大吨位锚下混凝土局部应力分析,揭示其分布规律是后张法预应力混凝土桥梁结构有待解决的课题之一。
4)  rigid-continuous bridge
刚构-连续桥梁
1.
The semi-active control and active control analysis of seismic responses for a longspan rigid-continuous bridge is performed,and the influences of the semi-active algorithms on the control effect of the seismic response are compared.
总结了六种半主动控制算法,采用磁流变阻尼器,对一座大跨刚构-连续桥梁进行了半主动控制和主动控制地震反应分析,比较分析了半主动控制算法对地震反应控制效果的影响。
5)  rigid continuous compound system bridge
刚构-连续梁桥
6)  beam-T continuous rigid-framed bridge
T梁连续刚构桥
补充资料:刚构桥
刚构桥
rigid frame bridge

   主要承重结构采用刚构的桥梁。梁和腿或墩(台)身构成刚性连接。按结构形式可分为门式刚构桥、斜腿刚构桥、T形刚构桥和连续刚构桥。①门式刚构桥。其腿和梁垂直相交呈门形构造,可分为单跨门构、双悬臂单跨门构、多跨门构和三跨两腿门桥。前三种跨越能力不大,适用于跨线桥,要求地质条件良好,可用钢和钢筋混凝土结构建造。三跨两腿门构桥,在两端设有桥台,采用预应力混凝土结构建造时,跨越能力可达200多米。②斜腿刚构桥。桥墩为斜向支撑的刚构桥,腿和梁所受的弯矩比同跨径的门式刚构桥显著减小,而轴向压力有所增加;同上承式拱桥相比不需设拱上建筑,使构造简化。桥型美观、宏伟,跨越能力较大,适用于峡谷桥和高等级公路的跨线桥,多采用钢和预应力混凝土结构建造。如安康汉江桥(铁路桥),腿趾间距176米,1982年建成。③T形刚构桥。是在简支预应力桥和大跨钢筋土箱梁桥的基础上,在悬臂施工的影响下产生的。其上部结构可为箱梁、桁架或桁拱,与墩固结而成T型,桥型美观、宏伟、轻型,适用于大跨悬臂平衡施工,可无支架跨越深水急流,避免下部施工困难或中断航运,也不需要体系转换,施工简便。④ 连续刚构桥 。 分主跨为连续梁的多跨刚构桥和多跨连续-刚构桥,均采用预应力混凝土结构,有两个以上主墩采用墩梁固结,具有T形刚构桥的优点。但与同类桥(如连续梁桥、T形刚构桥)相比:多跨刚构桥保持了上部构造连续梁的属性,跨越能力大,施工难度小,行车舒顺,养护简便,造价较低,如广东洛溪桥。多跨连续-刚构桥则在主跨跨中设铰,两侧跨径为连续体系,可利用边跨连续梁的 重量使T构做成不等长悬臂,以加大主跨的跨径。
   
   

重庆长江大桥:T形刚构公路桥

重庆长江大桥:T形刚构公路桥

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