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Behaviour of coupling beams having vertical slits at the ends

机译:端部有垂直缝的耦合梁的性能

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摘要

Architectural considerations and functional use result in door openings on the shear walls of tunnel form buildings, which cause coupled shear walls to be connected by short, deep and thin coupling beams. These coupling beams are subjected to higher shear forces and their thickness becomes generally less than 250mm for the tunnel form buildings, and much less than their counterparts in conventional reinforced concrete structures. It is simply not possible to design practically constructible coupling beams in the tunnel form buildings. In a coupled shear wall system, shear forces acting on the coupling beams can be reduced simply by the application of vertical separation joints (slits) at the ends of the coupling beams. As a design alternative, the use of slit connections at the ends of the coupling beams to be able to decrease the shear stiffness and shear forces was analytically investigated. Shear stiffness terms of common slit connected coupling beams (SCCBs) were derived by using plane stress finite elements. To be specific, extensive parametric study with respect to the geometry of a SCCB was carried out. Coupling beam heights, coupling beam lengths, slit heights and slit lengths were varied in an extensive parametric study to demonstrate their influences on the shear stiffness terms.
机译:在结构上的考虑和功能用途导致在隧道式建筑的剪力墙上开门,这导致耦连的剪力墙通过短,深和薄的连接梁连接。这些耦合梁承受较高的剪切力,对于隧道式建筑,其厚度通常小于250mm,远小于常规钢筋混凝土结构中的同类梁。在隧道式建筑中根本不可能设计出可实际构造的耦合梁。在耦合剪力墙系统中,可以简单地通过在耦合梁的端部施加垂直分离缝(缝)来减小作用在耦合梁上的剪力。作为设计的替代方案,对在耦合梁的端部使用狭缝连接以降低剪切刚度和剪切力的方法进行了分析研究。利用平面应力有限元推导了普通缝连接梁的抗剪刚度项。具体而言,就SCCB的几何形状进行了广泛的参数研究。在广泛的参数研究中,耦合梁的高度,耦合梁的长度,狭缝高度和狭缝长度发生变化,以证明它们对剪切刚度项的影响。

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