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Combined paraxial-consistent boundary conditions finite element model for simulating wave propagation in elastic half-space media

机译:近轴一致边界条件组合有限元模型,用于模拟弹性半空间介质中的波传播

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In this paper, a finite element model of a soil island is coupled to both a consistent transmitting boundary and a paraxial boundary, which are then used to model the propagation of waves in semi-infinite elastic layered media. The formulation is carried out in the frequency domain while assuming plane strain conditions. It is known that a discrete model of this type, while providing excellent results for a wide range of physical parameters in the context of a half-space problem, may deteriorate rapidly at low frequencies of excitation. This is so because at low frequencies the various waves in the model eventually attain characteristic wavelengths which exceed the distance of the bottom boundary, which then causes that boundary to fail. Also, the paraxial boundaries themselves break down at very low frequencies. In this paper, this difficulty is overcome and the model's performance is improved upon dramatically by incorporating an artificial buffer layer sandwiched between the bottom of the soil medium and the underlying elastic half-space. Applications dealing with rigid foundations resting on homogenous or layered half-space media are shown to exhibit significant improvement. Following extensive simulations, clear guidelines are provided on the performance of the coupled model and an interpretation is given on the engineering significance of the findings. Finally, clear recommendations are provided for the practical use of the proposed modelling strategy. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本文将土岛的有限元模型与一致的透射边界和近轴边界耦合,然后将其用于模拟波在半无限弹性层状介质中的传播。在假定平面应变条件下,在频域中进行公式化。众所周知,这种离散模型虽然在半空间问题的情况下为各种物理参数提供了出色的结果,但在低频激发下可能会迅速恶化。之所以如此,是因为在低频下,模型中的各种波最终都达到了超过底部边界距离的特征波长,从而导致该边界失效。同样,近轴边界本身在非常低的频率下会破裂。在本文中,克服了这一难题,并通过在土壤介质的底部和下面的弹性半空间之间夹入人工缓冲层,极大地提高了模型的性能。研究表明,处理均质或分层半空间介质上的刚性基础的应用程序显示出显着的改进。经过广泛的模拟,提供了有关耦合模型性能的明确指南,并对发现的工程意义进行了解释。最后,为所建议的建模策略的实际使用提供了明确的建议。 (C)2014 Elsevier Ltd.保留所有权利。

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