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This book presents the theoretical foundations, algorithms, and solution strategies behind the discrete-continuous finite element method, specifically applied to structural analysis in construction. It focuses on static calculations and determining the dynamic characteristics of buildings, structures, and engineering works.
The core of the discrete-continuous finite element method lies in the rigorous construction of exact analytical solutions for multi-point boundary value problems in structural mechanics. The development of this method is tied to the important and current goal of creating universal, "industrial-type" software packages. These packages aim to deliver reliable analytical solutions that guarantee refined calculations, which are necessary to ensure the technogenic safety of construction objects in a metropolis.
The book details how this approach can be implemented for practical engineering tasks. It is a technical resource for professionals and researchers interested in advanced numerical methods for structural analysis, offering a strategy for obtaining precise results in complex building mechanics scenarios.