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首页> 外文期刊>The Structural Design of Tall and Special Buildings >A New Set Of Design Aids For Groups Offour Cylindrical Silos Due To Interstice And internal Loadings
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A New Set Of Design Aids For Groups Offour Cylindrical Silos Due To Interstice And internal Loadings

机译:由于间隙和内部载荷而对四个圆柱筒仓的一组新的设计辅助

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The computation of design forces for reinforced concrete groups of four cylindrical silos requires significant computational effort due to continuity in the walls between adjacent silos. This paper presents a simple but accurate procedure for the computation of design forces acting on groups of four cylindrical silos due to stored materials. In this conjunction, finite element analyses were performed by using eight-node solid elements for various groups of four cylindrical silos under interstice and internal loadings. The design forces at the prescribed sections of interstice and external walls were computed. The silo wall thicknesses, intersection wall thicknesses and intersection wall lengths of these grouped silos were varied with an extensive parametric study to demonstrate their influences on resultant design forces. Design formulas were proposed and dimensionless design coefficients were derived from the comprehensive series of finite element analyses considering the effect of continuity in the walls. The results were expressed in simplified form, so that the prediction of bending moments, axial forces and shear forces became straightforward for design purposes. In addition, the rigidity of the interstice walls was varied by changing the modulus of elasticity and the redistribution of design forces was investigated.
机译:由于四个相邻筒仓之间壁的连续性,计算四个圆柱形筒仓的钢筋混凝土组的设计力需要大量的计算工作。本文提出了一种简单而精确的程序,用于计算由于存储的材料而作用在四个圆柱筒仓组上的设计力。在这种结合下,通过在间隙和内部载荷作用下,对四个圆柱形筒仓的各个组使用八节点实体单元来进行有限元分析。计算了缝隙和外墙规定部分的设计力。这些分组的筒仓的筒仓壁厚,相交壁厚和相交壁长随着广泛的参数研究而变化,以证明它们对合力的影响。提出了设计公式,并从考虑墙体连续性影响的一系列有限元分析中得出了无量纲设计系数。结果以简化形式表示,因此弯矩,轴向力和剪切力的预测出于设计目的变得简单明了。另外,通过改变弹性模量来改变空隙壁的刚度,并研究了设计力的重新分布。

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