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Calculation of Reinforced-Concrete Frame Strength under a Simultaneous Static Cross Section Load and a Column Lateral Impact

机译:同时静态横截面负荷下加强混凝土框架强度的计算及柱横向冲击

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When designing buildings with reinforced concrete that are planned to resist dynamic loads it is necessary to calculate this structural behavior under operational static and emergency impact and blast loads. Calculations of the structures under shock-wave loads can be performed by solving dynamic equations that do not consider static loads. Due to this fact the calculation of reinforced concrete frame under a simultaneous static and dynamic load in full 3d settings becomes a very non trivial and resource consuming problem. This problem can be split into two tasks. The first one is a shock-wave problem that can be solved using software package RANET-3, which allows solving the problem using finite elements method adapted for dynamic task. This method calculates strain-stress state of the material and its dynamic destruction, which is considered as growth and consolidation of micro defects under loading. On the second step the results of the first step are taken as input parameters for quasi static calculation of simultaneous static and dynamic load using finite elements method in AMP Civil Engineering-11.
机译:当使用计划抵抗动态载荷的钢筋混凝土设计建筑物时,有必要计算操作静态和应急冲击和爆破载荷的这种结构行为。通过求解不考虑静载荷的动态方程,可以执行冲击波载荷下的结构的计算。由于这一事实,在全3D设置中同时静态和动态负载下的钢筋混凝土框架的计算变为非常琐碎和资源消耗问题。这个问题可以分为两个任务。第一个是一个冲击波问题,可以使用软件包Ranet-3来解决,这允许使用适用于动态任务的有限元方法来解决问题。该方法计算材料的应变应力状态及其动态破坏,其被认为是负载下的微缺陷的生长和固结。在第二步上,第一步的结果是使用AMP Cinumentic Engineering-11中的有限元方法进行同时静态和动态负荷的准静态计算的输入参数。

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