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1)  horizontal outriggers
水平伸臂
1.
Continuum analysis of frame-tube structure with top-horizontal outriggers;
顶部带水平伸臂的框架-筒体结构连续化分析
2.
Through internal force analysis on the intersection of horizontal outriggers and tube wall for frame-tube structure with horizontal outriggers,and discussing the reasons of shear mutation on this position,the primary influencing factors of tube shear mutation are the bending moment from outriggers and the outrigger s sectional height are stated.
对带有水平伸臂构件的框架-筒体结构的水平伸臂与筒体墙肢相交处进行了受力分析,讨论了该处出现剪力突变的原因,说明了影响筒体剪力突变的主要因素是水平伸臂传来的弯矩大小和伸臂的截面高度,提出了减少整体结构内力突变的更有效的方法是尽量加大伸臂截面高度、同时采用较小刚度的设计概念。
3.
By using sidesway calculation formula for frame-tube structures with top horizontal outriggers,the optimization stiffness of outriggers in the frame-tube structures with strengthened story are analyzed the method to determine the optimum stiffness of the horizontal outriggers magnitude and precise parameters base on reduced structure sidesway is presented.
利用带水平伸臂的框架—筒体结构侧移公式,对带加强层的框架—筒体结构水平伸臂的最佳刚度进行了分析,明确给出了根据需要减少的结构侧移量,确定水平伸臂最佳刚度的方法,并给出了具体参数。
2)  Extend your arms horizontally.
平伸双臂。
3)  extend [stretch, spread] one's arms horizontally
两臂平伸
4)  tower crane boom
水平吊臂
5)  level arm
水平臂
1.
The article analyzes the supporting of QT60/80 Tower Crane s improved arm hanger-double-hanging-point level arm, and deduces the calculating formula of opposite forces on different points , from which we can know the figures of the forces depend on position X of hanging point B.
对QT60/80塔机的改造臂架——双吊点水平臂的支承进行了分析,并推导出各支点反力的计算方程式。
6)  horizontal arm
水平悬臂
补充资料:地下水水资源评价(见水资源评价)


地下水水资源评价(见水资源评价)


  d ixiashui shuiziyuan Ping】ia地下水水资源评价见水资源评价。
  
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