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A categorical perspective towards aerodynamic models for aeroelastic analyses of bridge decks

机译:对用于桥面气动分析的空气动力学模型的绝对观点

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Reliable modelling in structural engineering is crucial for the serviceability and safety of structures. A huge variety of aerodynamic models for aeroelastic analyses of bridges poses natural questions on their complexity and thus, quality. Moreover, a direct comparison of aerodynamic models is typically either not possible or senseless, as the models can be based on very different physical assumptions. Therefore, to address the question of principal comparability and complexity of models, a more abstract approach, accounting for the effect of basic physical assumptions, is necessary. This paper presents an application of a recently introduced category theory-based modelling approach to a diverse set of models from bridge aerodynamics. Initially, the categorical approach is extended to allow an adequate description of aerodynamic models. Complexity of the selected aerodynamic models is evaluated, based on which model comparability is established. Finally, the utility of the approach for model comparison and characterization is demonstrated on an illustrative example from bridge aeroelasticity. The outcome of this study is intended to serve as an alternative framework for model comparison and impact future model assessment studies of mathematical models for engineering applications.
机译:结构工程中的可靠建模对于结构的可维护性和安全性至关重要。用于桥梁气动弹性分析的大量空气动力学模型对桥梁的复杂性和质量提出了自然的问题。此外,由于空气动力学模型可以基于完全不同的物理假设,因此通常无法进行空气动力学模型的直接比较,也可能毫无意义。因此,为了解决模型的主要可比性和复杂性问题,有必要采用一种更抽象的方法来说明基本物理假设的影响。本文介绍了一种最新引入的基于分类理论的建模方法在桥梁空气动力学模型中的应用。最初,扩展了分类方法,以允许对空气动力学模型进行充分的描述。评估所选空气动力学模型的复杂性,基于此建立模型的可比性。最后,从桥梁气动弹性的一个示例性例子中证明了该方法用于模型比较和表征的效用。这项研究的结果旨在作为模型比较的替代框架,并影响工程应用数学模型的未来模型评估研究。

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