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Modal analysis methods for validation of vaulted stone masonry models

机译:用于验证拱形砌体模型的模态分析方法

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Detailed three-dimensional finite element models are used in the assessment of masonry vaults and domes, in order to determine support reactions and stresses within the vault under various loading conditions. However, it is important to validate the models used on an existing structure by comparison of the results of the analysis to the response of the prototype. The problem of validating a structural model is particularly difficult for large-scale masonry vaults due to difficulties in access, and difficulties in loading the structure sufficiently to obtain a measurable response. Visual methods, such as investigation of cracks and comparing crack locations to tension zones in the model have been used with limited success; however, the lack of information on boundary conditions makes this method susceptible to error in structures with support settlements. Recently, modal testing has been proposed as a model validation procedure. In this procedure, the dynamic characteristics of the experimental model and the prototype can be compared. These comparisons may be simple comparisons of natural frequencies or much more complex determinations of mode shapes by methods of modal analysis. This paper reviews the application of modal analysis methods to masonry vault validation, and shows some specific examples, including detailed modal analysis tests done on the National Cathedral in Washington, DC, tests done on the Cathedral of St. John the Divine in New York City.
机译:详细的三维有限元模型用于评估砖石拱顶和穹顶,以确定在各种载荷条件下拱顶内的支撑反作用力和应力。但是,通过将分析结果与原型响应进行比较,验证在现有结构上使用的模型非常重要。由于难以进入,以及难以充分加载结构以获得可测量的响应,对于大型砌筑金库来说,验证结构模型的问题尤其困难。视觉方法,例如裂纹研究以及将裂纹位置与模型中的拉伸区域进行比较,已获得了有限的成功。但是,由于缺乏关于边界条件的信息,因此该方法容易受到带有支撑沉降的结构中的误差的影响。最近,模态测试已被提出作为模型验证程序。在此过程中,可以比较实验模型和原型的动态特性。这些比较可以是固有频率的简单比较,也可以是通过模态分析方法更复杂地确定模态形状。本文回顾了模态分析方法在砌体金库验证中的应用,并展示了一些具体示例,包括在华盛顿特区国家大教堂上进行的详细模态分析测试,在纽约市圣约翰大教堂上进行的测试。

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