首页> 外文会议>Technology conferences 2012: Visualization, imaging and image processing; Modelling and simulation; Wireless communications >HYBRIDIZING FINITE ELEMENT METHOD AND GENETIC ALGORITHMS TO ESTIMATE BRIDGE SCOUR DEPTHS
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HYBRIDIZING FINITE ELEMENT METHOD AND GENETIC ALGORITHMS TO ESTIMATE BRIDGE SCOUR DEPTHS

机译:混合有限元方法和遗传算法估计桥梁冲刷深度

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摘要

A hybrid model that combines finite element and genetic algorithms is developed to estimate the scour depth around bridge piers by using the natural frequency of the bridge structure. Scouring around bridge piers is an important safety issue of bridge management since it could lead to bridge slanting and collapsing. However, the mechanism of water flow around the pier structure is very complicated, which makes it is very difficult to develop a generic model to determine the scour depth and the bridge safety. Many researchers have tried to estimate the scour depths around bridge piers by simulating the bridge model with various factors, such as the depth of water, average velocity of flow, and diameter of sand. However most of models can only be applied to certain types of bridges under some predefined conditions. In this tusy, the finite element method is used to simulate various conditions by mesh such as pile foundations type, soil strength, and scour depth. Since simulations generate a huge amount of data, which makes it hard to analyze and find the relation between the scour depth and the natural frequency, genetic algorithms are used to find the fitted generic formula that defines the relationship between the scour depth and the natural frequency. In this paper, soil strength compare with natural frequency within different bridge scour depth is discussed.
机译:开发了一种结合有限元和遗传算法的混合模型,以通过使用桥梁结构的固有频率来估算桥墩周围的冲刷深度。桥墩周围的冲刷是桥梁管理的重要安全问题,因为它可能导致桥梁倾斜和坍塌。但是,墩台结构周围水流的机理非常复杂,因此很难建立通用模型来确定冲刷深度和桥梁安全性。许多研究人员试图通过模拟各种因素(例如水深,平均流速和沙子直径)的桥梁模型来估算桥墩周围的冲刷深度。但是,大多数模型只能在某些预定义条件下应用于某些类型的桥梁。在本文中,有限元方法被用来模拟各种条件的网格,例如桩基础类型,土壤强度和冲刷深度。由于模拟产生了大量数据,这使得难以分析和发现冲刷深度与固有频率之间的关系,因此使用遗传算法找到定义冲刷深度与固有频率之间关系的拟合通用公式。 。本文讨论了不同桥冲深度下的土体强度与自然频率的比较。

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