Analysis of Aqueducts Subjected to Hydrostatic and Dynamic Loads Using 3D - Solid Modeling

J. Yadav, S. S. Babu
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引用次数: 0

Abstract

In many areas of developing countries, the access to fresh water is limited even today. Aqueducts are the major structures in water supply and diversion schemes when carrying the water over natural and artificial obstacles such as valleys, rivers, roads, railway lines, canals etc. During an earthquake, the effect of water sloshing on the walls of aqueduct and the resulting hydrodynamic forces is often neglected. In this study, the analysis is carried out for a single span elevated aqueduct using finite element analysis, in which the structure is discretized into smaller elements. The structure is modelled using solid elements in Staad Pro V8i software for different loads. The behavioral response of aqueduct structure subjected to hydrostatic loads and dynamic loads due to seismic ground excitation has been analyzed. It has been observed that the structure is more vulnerable to dynamic loads compared to hydrostatic loads. The effect of dynamic loads due to sloshing of water under seismic forces is predominant. The stresses induced by hydrodynamic loads are observed to be 2.4 times more than hydrostatic loads.
基于三维实体模型的渡槽静、动荷载分析
在发展中国家的许多地区,即使在今天,获得淡水的机会也很有限。当输水通过山谷、河流、道路、铁路线、运河等自然和人工障碍物时,渡槽是供水和引水方案中的主要结构。在地震期间,水晃动对渡槽壁的影响及其产生的水动力往往被忽视。在本研究中,使用有限元分析对单跨高架渡槽进行了分析,其中结构被离散为较小的单元。使用Staad Pro V8i软件中的实体元素对不同荷载的结构进行建模。分析了地震动作用下渡槽结构在静水荷载和动荷载作用下的行为响应。已经观察到,与静水荷载相比,结构更容易受到动荷载的影响。水在地震力作用下的晃动引起的动载荷的影响是主要的。观察到由流体动力载荷引起的应力是流体静力载荷的2.4倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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