论文标题
混合连续性 - 二零宏观建模多环砌体拱门桥
Hybrid continuum-discrete macro modelling of multi ring masonry arch bridges
论文作者
论文摘要
本文提出了混合连续离散的宏建模策略,并采用多尺度校准程序,用于对砖砌桥梁进行逼真的模拟。这些结构的响应受砌体材料的内在非线性的影响,这又取决于单位和迫击炮接头的机械性能以及键特性。基于同质表示的有限元方法被广泛用于评估崩溃的非线性行为,因为它们通常与有限的计算需求有关。但是,这样的模型需要对模型材料参数进行准确的校准,以正确地允许砌体键。根据所提出的方法,宏观材料参数由高级多物镜策略确定,并通过最小化量表过渡误差的适当函数来从中尺度虚拟测试的结果中获得遗传算法。开发的连续离散有限元宏观描述和校准程序被应用以模拟非线性行为,以使其以2D平面响应为重点的多环形桥桥样本的崩溃。将获得的结果与使用详细的中尺度模型获得的结果进行了比较,该模型证实了对砖石拱桥的实际非线性模拟所提出的方法的有效性和准确性。
This paper presents a hybrid continuum discrete macro modelling strategy with a multiscale calibration procedure for realistic simulations of brick masonry bridges. The response of these structures is affected by the intrinsic nonlinearity of the masonry material, which in turn depends upon the mechanical properties of units and mortar joints and the bond characteristics. Finite element approaches based upon homogenised representations are widely employed to assess the nonlinear behaviour up to collapse, as they are generally associated with a limited computational demand. However, such models require an accurate calibration of model material parameters to properly allow for masonry bond. According to the proposed approach, the macroscale material parameters are determined by an advanced multi objective strategy with genetic algorithms from the results of mesoscale virtual tests through the minimisation of appropriate functionals of the scale transition error. The developed continuum discrete finite element macroscale description and the calibration procedure are applied to simulate the nonlinear behaviour up to collapse of multi ring arch bridge specimens focusing on the 2D planar response. The results obtained are compared to those achieved using detailed mesoscale models confirming the effectiveness and accuracy of the proposed approach for realistic nonlinear simulations of masonry arch bridges.