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A BEM formulation for linear bending analysis of plates reinforced by beams considering different materials

机译:考虑不同材料的梁加筋板线性弯曲分析的BEM公式

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摘要

In this work, a boundary element method (BEM) formulation to perform linear bending analysis of building floor structures where slabs and beams can be defined with different materials is presented. The proposed formulation is based on Kirchhoffs hypothesis, the building floor being modelled by a zoned plate, where the beams are treated as thin sub-regions with larger rigidities. This composed structure is treated as a single body, the equilibrium and compatibility conditions being automatically taken into account. In the final integral equation, the tractions are eliminated along the interfaces, therefore reducing the number of degrees of freedom. The displacements are approximated along the beam cross-section, leading to a model where the values remain defined on the beam skeleton line instead of their boundaries. The accuracy of the proposed model is shown by comparing the numerical results with a well-known finite element code.
机译:在这项工作中,提出了一种边界元法(BEM)公式,可以对建筑地板结构进行线性弯曲分析,在该结构中可以用不同的材料定义板和梁。提议的公式基于基尔霍夫(Kirchhoffs)假设,建筑地板由分区板建模,其中梁被视为具有较大刚度的细小分区。这种组成的结构被视为一个整体,会自动考虑平衡和相容性条件。在最终积分方程中,沿界面消除了牵引力,因此减少了自由度的数量。沿梁的横截面对位移进行近似估计,从而得到一个模型,在该模型中,值保留在梁骨架线上而不是其边界上。通过将数值结果与众所周知的有限元代码进行比较,可以证明所提出模型的准确性。

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