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The behaviour of open spandrel brickwork masonry arch bridges

机译:开放式拱肩砖砌体拱桥的性能

摘要

The behaviour of open spandrel brickwork masonry arch bridges (OSBMAB) was studied through model tests and finite element simulations. One three-metre and two five-metre span, full scale OSBMAB were constructed and tested to destruction. Two `partial' models including a combination of spandrel arches and piers, and a five-metre span single arch were also tested with intention of studying the functions of the components of the OSBMAB. To simulate the behaviour of the brickwork masonry arches, three finite element modelling techniques were developed: - (a) smeared modelling method (SMM), in which the failure of brickwork masonry caused by tensile cracking, compressive crushing or sliding is simulated as "loss of stiffness" in the corresponding directions within the domain of the geometry of the arch structure; and (b) discrete modelling method (DMM), in which the failure of brickwork masonry caused by tensile cracking or sliding is simulated as the change in the geometry of the arch structure, i. e., the geometrical discontinuity at prescribed locations; and (c) the mixed modelling method (MMM), in which the main arch, spandrel arches/piers are modelled using the SMM, and the interfaces between the fill and arch are modelled using the DMM. Parametric studies were carried out to investigate the effects of changes in material properties and finite element model related parameters on the behaviour of the OSBMAB, and to justify the values of those parameters adopted in the finite element models using the FE Package ANSYS 5.3. The comparisons were made between the finite element results and those obtained from the model tests. It has been demonstrated in terms of the ultimate loads, the modes of failure and the responses of loads vs. displacements that FE modeling can give good correlation.
机译:通过模型测试和有限元模拟研究了开跨式砖砌砌体拱桥(OSBMAB)的性能。建造了一个三米跨度和两个五米跨度的全尺寸OSBMAB,并进行了破坏测试。为了研究OSBMAB组件的功能,还测试了两个“局部”模型,包括拱形拱和墩的组合,以及五米跨度的单个拱。为了模拟砖砌砌体拱的行为,开发了三种有限元建模技术:-(a)涂装建模方法(SMM),其中将砖砌砌体由于拉伸裂缝,压缩压碎或滑动引起的破坏模拟为“损失刚度”在拱形结构几何范围内的相应方向上; (b)离散建模方法(DMM),其中模拟由拉伸裂缝或滑动引起的砖石砌体破坏,作为拱结构几何形状的变化,即e。在规定位置的几何不连续性; (c)混合建模方法(MMM),其中使用SMM对主拱,拱形拱/墩进行建模,并使用DMM对填充和拱之间的界面进行建模。进行了参数研究,以研究材料特性和有限元模型相关参数的变化对OSBMAB行为的影响,并使用FE软件包ANSYS 5.3证明有限元模型中采用的那些参数的值是合理的。比较了有限元结果和从模型测试中获得的结果。在极限载荷,破坏模式以及载荷与位移的响应方面已经证明了有限元建模可以提供良好的相关性。

著录项

  • 作者

    Tao H;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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