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1)  line-shape control
线形测控
1.
Take some bridge as an example,we can mastery the line-shape control precision of bridge through analysis the experiment parameter and designed parameter,then we can come to the monitor.
本文研究了箱梁线形测控方法,并结合某大桥工程实例,分析实验参数和设计参数计算它们的预拱度,以控制预制节段的线形,保证箱梁预制精度,然后通过自己编写的程序方便直观地看出箱梁预制的线形控制精度,达到实时监控的目的。
2)  lineament forecast control
线形预测控制
1.
In combination with the practice of construction of the main section of the Fuhe River Panlong Bridge,the principle and method for construction control were discussed and the method of lineament forecast control and the characteristics of conc.
结合府河盘龙大桥主桥施工控制实践,阐述了悬臂浇筑施工过程中的施工监控原理和方法,研究了箱梁的线形预测控制方法和混凝土应变分布特性,以及温度变形对桥梁施工监控的影响,科学地指导了施工。
3)  line form control predict
线形控制预测
4)  configuration measurement control
形态测控
5)  linear control
线形控制
1.
The linear control of pre-stress concrete continuous rigid frame main beam;
预应力混凝土连续刚构主梁线形控制
2.
On linear control of main bridge of Shicuncou grand bridge;
浅谈石村沟特大桥主桥线形控制
3.
On the linear control of the continuous box-beam poured by cantilever;
悬臂浇筑连续箱梁线形控制探讨
6)  alignment control
线形控制
1.
Application of the iterative optimum method in alignment control of long-span arch bridge;
迭代优化算法在大跨拱桥线形控制中的应用
2.
The spatial effects of cantilever part during construction and girder alignment control are analyzed,and relevant countermeasures are put forwar
对比自行式移动模架工艺与传统满堂支架工艺、少支架施工的优劣,详细介绍自行式移动模架施工适用条件和具体施工工艺;同时,对施工中出现的悬臂段空间效应问题和梁体线形控制进行分析和研究,并提出相应对策。
3.
At last,alignment control requirements and measures,stress monitoring require- ments and measures,closure techniques are analysed.
介绍了京杭运河特大桥主桥悬臂施工监控的关键技术,论述了施工监控的目的与内容,阐明了线形控制及应力监测的技术要求、措施以及合龙技术等。
补充资料:道路线形设计
      见公路线形设计。
  

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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