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A fast construction sequential analysis strategy for tall buildings

机译:高层建筑的快速施工顺序分析策略

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In structural analysis of tall buildings the traditional primary loading analysis approach that assumes all the loads are simultaneously applied to the fully built structure has been shown to be unsuitable by many researches. The construction sequential analysis that reflects the fact of the level-by-level construction of tall buildings can provide more reliable results and has been used more and more. However, too much computational cost has prevented the construction sequential analysis from its application in CAD/CAE software for building structures, since such an approach needs to deal with systematic changing of resultant stiffness matrices following level-by-level construction. This paper firstly analyzes the characteristics of assembling and triangular factorization of the stiffness matrix in the finite element model of the construction sequential analysis, then presents a fast construction sequential analysis strategy and a corresponding step-by-step active column solver by means of improving the existing skyline solver. The new strategy avoids considerably repeated calculation by only working on the latest appended and modified part of resultant stiffness matrices in each construction level. Without any simplification, the strategy guarantees accuracy while efficiency is greatly enhanced. The numerical tests show that the proposed strategy can be implemented with high efficiency in practical engineering design.
机译:在高层建筑的结构分析中,许多研究表明,假定所有荷载同时施加到完整结构上的传统主要荷载分析方法是不合适的。反映高层建筑逐层建造的事实的施工顺序分析可以提供更可靠的结果,并且已被越来越多地使用。但是,太多的计算成本阻碍了施工顺序分析在建筑CAD / CAE软件中的应用,因为这种方法需要处理逐级构造后所得刚度矩阵的系统变化。本文首先分析了施工顺序分析的有限元模型中刚度矩阵的组装和三角分解的特点,然后提出了一种快速的施工顺序分析策略和相应的逐步主动柱求解器。现有的天际线求解器。新策略通过仅处理每个构造层中刚度矩阵的最新附加部分和修改部分,从而避免了重复计算。该策略无需进行任何简化,就可以保证准确性,同时可以大大提高效率。数值试验表明,所提出的策略可以在实际工程设计中高效地实施。

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