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首页> 外文期刊>The international journal of pavement engineering >Efficient reevaluation of surface displacements in a layered elastic half-space
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Efficient reevaluation of surface displacements in a layered elastic half-space

机译:分层弹性半空间中表面位移的有效重新评估

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摘要

In situ evaluation of mechanical pavement properties requires fitting measured surface displacements with model displacements. Such inverse analysis is guided by optimisation algorithms that entail re-execution of the underlying model many times over. For layered elasticity, which is the most commonly employed pavement model, this involves calculating computationally demanding semi-infinite integrals in every optimisation step. In this connection, a method was proposed to improve the computational efficiency of surface displacement recalculations in layered elastic systems. It was based on manipulating the original integrals by adding and then subtracting carefully selected auxiliary functions so that they remained mathematically unchanged, yet became faster to compute. The auxiliary functions were derived from an analytic interrogation, rendering the formulation robust and applicable to any layered elastic system without practical restrictions on the model parameters. Overall, the method is deemed consistently more efficient than standard evaluation techniques for achieving a given accuracy level.
机译:机械路面性能的现场评估需要将测得的表面位移与模型位移进行拟合。这种逆分析由优化算法指导,该优化算法需要多次重新执行基础模型。对于分层弹性(这是最常用的路面模型),这涉及在每个优化步骤中计算需要计算的半无限积分。在这方面,提出了一种提高层状弹性系统中表面位移重新计算的计算效率的方法。它基于通过添加和减去精心选择的辅助函数来操纵原始积分,从而使它们在数学上保持不变,但计算速度更快。辅助功能是从解析询问中得出的,这使该公式变得健壮并适用于任何分层弹性系统,而对模型参数没有实际限制。总体而言,该方法被认为始终比标准评估技术更有效地达到了给定的精度水平。

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