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Hybrid Analytical Modeling of Bridge Structures: An Innovative Approach

机译:桥梁结构的混合分析建模:一种创新方法

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The origins of finite element method can be traced back to the 1960's and since then it has been used in solving several structural engineering problems. The direct result of finite element analysis is the calculation of the deformation and the stress fields in the structure. The stress results are not sufficient for performing the design checks which rely on force results. Hence, an integral approach is required where section forces are calculated from the stresses. This is a post-processing operation which involves complex interpolation, extrapolation, and integration functions. The first step in any structural analysis is the creation of a suitable analytical model. Beam analytical models are commonly used mainly because they are easier to create and the results are readily usable. Finite element models, on the other hand, can be time-consuming and complex because they require good understanding of the flow of forces, effects of stress concentration, and as mentioned before, aggregating stress resultants to produce sectional design forces. A novel concept of hybrid analytical model has been created and implemented in Bentley's RM Bridge software. The hybrid model is predominantly a beam model enhanced with FEM elements in the regions dominated by stress concentrations where "plane sections remain plane before and after loading" assumption may not be valid. The result is the best of the both worlds - simplicity and speed of beam models, and the realistic modelling of stress field flows.
机译:有限元方法的起源可以追溯到1960年代,从那时起它就被用于解决一些结构工程问题。有限元分析的直接结果是计算结构中的变形和应力场。应力结果不足以执行依赖于力结果的设计检查。因此,需要一种整体方法,其中根据应力计算截面力。这是一个后处理操作,涉及复杂的插值,外推和积分功能。任何结构分析的第一步都是创建合适的分析模型。光束分析模型之所以普遍使用,主要是因为它们更易于创建并且结果易于使用。另一方面,有限元模型可能是耗时且复杂的,因为它们需要充分了解力的流动,应力集中的影响,并且如前所述,将应力合计汇总以产生截面设计力。 Bentley的RM Bridge软件已创建并实现了一种新颖的混合分析模型概念。混合模型主要是在受应力集中控制的区域中用有限元单元增强的梁模型,其中“平面截面在加载前后保持平面”假设可能无效。结果是两全其美-梁模型的简单性和速度,以及应力场流的逼真的建模。

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