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Hybrid predictions of railway induced ground vibration using a combination of experimental measurements and numerical modelling

机译:实验测量与数值模拟相结合的铁路诱发地面振动的混合预测

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摘要

Along with the rapid expansion of urban rail networks comes the need for accurate predictions of railway induced vibration levels at grade and in buildings. Current computational methods for making predictions of railway induced ground vibration rely on simplifying modelling assumptions and require detailed parameter inputs, which lead to high levels of uncertainty. It is possible to mitigate against these issues using a combination of field measurements and state-of-the-art numerical methods, known as a hybrid model. In this paper, two hybrid models are developed, based on the use of separate source and propagation terms that are quantified using in situ measurements or modelling results. These models are implemented using term definitions proposed by the Federal Railroad Administration and assessed using the specific illustration of a surface railway. It is shown that the limitations of numerical and empirical methods can be addressed in a hybrid procedure without compromising prediction accuracy. (C) 2016 Elsevier Ltd. All rights reserved.
机译:随着城市铁路网络的迅速发展,需要对铁路在地面和建筑物中引起的振动水平进行准确预测。用于预测铁路诱发的地面振动的当前计算方法依赖于简化建模假设,并且需要详细的参数输入,这导致高度的不确定性。可以通过结合使用现场测量和最新的数值方法(称为混合模型)来缓解这些问题。在本文中,基于单独的源和传播项的使用,开发了两个混合模型,这些项使用现场测量或建模结果进行了量化。这些模型是使用联邦铁路局提出的术语定义来实现的,并使用地面铁路的具体说明进行评估。结果表明,数值和经验方法的局限性可以在不影响预测准确性的前提下以混合过程解决。 (C)2016 Elsevier Ltd.保留所有权利。

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