海啸波对结构的荷载模拟

Tatiana Belash, Anton Yakovlev
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引用次数: 0

摘要

目前,建筑结构计算方法的改进仍在继续,其中包括确定荷载大小的方法。尽管对于大多数冲击,从应用中确定载荷的原则和方法已经形成了很长时间,但在设计实践中有时会遇到一些特殊任务,例如海啸波对结构的影响。本文致力于在ANSYS 2021软件包的“Fluid Flow (Fluent)”模块中对结构上的波浪滚动进行建模,并将所得结果与SP 292.1325800.2017“海啸易发地区的建筑物和结构”中提出的方法进行比较。设计规则”。本文的研究表明,在ANSYS中模拟波浪滚动时,水动压力的传播性质与SP 292.1325800.2017中提出的类似:根据底部最大压力的三角形图。但与此同时,合资企业的最大压力值约为ANSYS计算的1.5倍,这是由许多不同的因素造成的。但是,尽管如此,可以在项目前阶段对建筑工地上的海啸波进行建模,以评估物体表面压力分布的性质,从而选择最合适的结构和空间规划解决方案。
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MODELING OF LOADS FROM TSUNAMI WAVES ON THE STRUCTURE
Currently, the improvement of methods for calculating building structures is continuing, including, among other things, methods for determining the magnitude of the load. Despite the fact that for most impacts, the principles of determining loads and methods from the application have been formed for a long time, a number of special tasks are sometimes encountered in design practice, for example, the impact of tsunami waves on a structure. This article is devoted to modeling the wave roll on a structure in the "Fluid Flow (Fluent)" module of the ANSYS 2021 software package and comparing the results obtained with the methodology presented in SP 292.1325800.2017 "Buildings and structures in tsunami-prone areas. Design rules". The studies presented in this article have shown that the nature of the propagation of hydrodynamic pressure when modeling wave rolling in ANSYS is similar to that presented in SP 292.1325800.2017: according to a triangular plot with maximum pressure at the bottom. But at the same time, the value of the maximum pressure on the joint venture is about 1.5 times greater than according to the calculation in ANSYS, which is explained by many different factors. But, despite this, modeling of the tsunami waves rolling on the construction site can be performed at the pre-project stage in order to assess the nature of the pressure distribution over the surface of the object, which will allow choosing the most suitable structural and space-planning solutions.
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
43
审稿时长
4 weeks
期刊最新文献
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