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Development of an equivalent static method for the approximation of the dynamic response of offshore structures

机译:开发等效静力学方法来近似海上结构的动力响应

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Purpose The design of compliant towers in deep waters is greatly affected by their dynamic response to wave loads as well as by the geometrical and material nonlinearities that appear. In general, a nonlinear time history dynamic analysis is the most appropriate one to be applied to capture the exact response of the structure under wave loading. However, this type of analysis is complex and time-consuming. This paper aims to develop a simplified methodology, which can adequately approximate the maximum response yielded by a dynamic analysis by means of a static analysis. Design/methodology/approach Various types of time history dynamic analysis are first applied on a detailed structural model, ranging from linear to fully nonlinear, that are used as reference solutions. In the sequel, a simplified analysis model is formulated, capable of reproducing the response of the entire structure with significantly reduced computational cost. In the next stage, this model is used to obtain the linear and nonlinear response spectra of the structure. Finally, these spectra are used to formulate a simplified design approach, based on equivalent static loads. Findings This simplified design approach produces good results in cases that the response is mainly governed by the first eigenmode, which is the case when compliant towers are considered. Originality/value The present paper borrows ideas from the area of earthquake engineering, where simplified methodologies can be used for the design of a certain class of structures. However, the development of a simplified methodology for the approximation of the dynamic behavior of offshore structures under wave loading is a much more complex problem, which, to the authors' knowledge, has not been addressed till now.
机译:目的深水柔顺塔的设计受其对波浪荷载的动态响应以及所出现的几何和材料非线性的影响很大。通常,非线性时程动态分析是最适合用来捕获波浪荷载下结构的精确响应的一种方法。但是,这种类型的分析既复杂又费时。本文旨在开发一种简化的方法,该方法可以通过静态分析充分近似动态分析所产生的最大响应。设计/方法/方法首先,将各种类型的时程动态分析应用于详细的结构模型,从线性到完全非线性,将其用作参考解决方案。结果,制定了简化的分析模型,该模型能够以显着降低的计算成本再现整个结构的响应。在下一阶段,此模型用于获得结构的线性和非线性响应谱。最后,这些光谱用于基于等效静载荷来制定简化的设计方法。研究结果这种简化的设计方法在响应主要受第一个本征模式控制的情况下会产生良好的结果,在这种情况下,考虑使用兼容塔架。原创性/价值本文是从地震工程领域借鉴的思想,在地震工程领域中,简化的方法可以用于设计特定类型的结构。然而,开发一种简化的方法以逼近海浪结构在波浪荷载下的动态行为是一个更为复杂的问题,据作者所知,到目前为止尚未解决。

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