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Shape optimized inclined single and double wall wave barriers for ground vibration mitigation

机译:形状优化的倾斜单壁和双壁壁障,可减轻地面振动

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Stiff wave barriers are capable of reducing the transmission of ground vibrations. Most designs consist of a single vertical wall, although double walls are also being considered. This paper investigates the shape optimization (position, inclination, length and thickness) of these topologies in a two-dimensional setting, for a point source and a point receiver placed symmetrically with respect to the design domain. Three types of sources are studied: a single-frequency source, a broadband source and a harmonic source within a given frequency range. An economical constraint on the maximum material use is considered. A multi-region BEM methodology is used for evaluating the objective function and its gradient. Analytical expressions are presented for the sensitivities, providing a very effective simulation tool for this type of problem. It is found that significant improvement can be achieved by repositioning and inclining the walls when compared to the reference cases. It is also found that optimized double wall barriers outperform single wall barriers. The improvement is insignificant for sources which generate Rayleigh wavelengths similar to the design domain depth, but it greatly increases as frequency increases and the penetration depth decreases.
机译:硬波屏障能够减少地面振动的传播。尽管也考虑了双壁,但大多数设计都由单个垂直壁组成。本文研究了在二维设置中针对相对于设计域对称放置的点源和点接收器的这些拓扑的形状优化(位置,倾斜度,长度和厚度)。研究了三种类型的源:给定频率范围内的单频源,宽带源和谐波源。考虑了最大材料用量的经济限制。多区域边界元方法用于评估目标函数及其梯度。给出了灵敏度的解析表达式,为此类问题提供了非常有效的仿真工具。发现与参考案例相比,通过重新定位和倾斜墙壁可以实现显着改善。还发现优化的双壁屏障优于单壁屏障。对于产生与设计域深度相似的瑞利波长的光源而言,这种改进微不足道,但随着频率的增加和穿透深度的减小,其显着增加。

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