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Finite element modeling of concrete beams prestressed with external tendons

机译:体外索预应力混凝土梁的有限元建模

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摘要

In this study, a numerical model based on the finite element method incorporating an arc-length solution algorithm for materially and geometrically nonlinear analysis of concrete beams prestressed with external tendons is established. The second-order effects are taken into account. The effects of external tendons are expressed by equivalent nodal loads of the beam element and therefore analysis of externally prestressed concrete beams can be conducted with the ordinary bonded concrete beams. The section tangent stiffness matrix is derived by the layered approach, and then the nonlinear beam flexural theory is utilized to determine the element tangent stiffness matrix. An updated normal plane arc-length solution algorithm is used to trace the nonlinear response of the beams from zero loads up to ultimate loads. This algorithm can deal well with the changes of response during loading, so that the possible limit points on the load-deflection response prior to the ultimate limit state can be easily passed. Results predicted by the analysis are in good agreement with the experimental data.
机译:在这项研究中,建立了一个基于有限元方法的数值模型,该模型结合了弧长求解算法,对用预应力筋预应力的混凝土梁进行了材料和几何非线性分析。考虑了二阶效应。外部筋的作用由梁单元的等效节点载荷表示,因此可以使用普通的粘结混凝土梁对外部预应力混凝土梁进行分析。通过分层的方法得到截面切线刚度矩阵,然后利用非线性梁弯曲理论确定单元切线刚度矩阵。一种更新的法向平面弧长解算法用于跟踪从零载荷到极限载荷的梁的非线性响应。该算法可以很好地处理加载过程中的响应变化,从而可以轻松传递最终极限状态之前的载荷-挠度响应上可能的极限点。分析预测的结果与实验数据非常吻合。

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