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Structural Monitoring of Underground Structures in Multi-Layer Media by Dynamic Methods

机译:动态方法对多层介质地下结构的结构监测

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摘要

The actual problem of structural monitoring and modeling of dynamic response from buried building is considered in the framework of arbitrary dynamic load. The results can be used for designing underground transport constructions, crossings, buried reservoirs and foundations. In existing methods, the system of sensors that register the response to a dynamic action does not allow for effective interpretation of the signal without understanding the dynamic features and resonance phenomena. The analytical and numerical solution of the problem of the dynamics of a buried object in a layered medium is considered. A multilayer half-space is a set of rigidly interconnected layers characterized by elastic properties. At a distance, an arbitrary dynamic load acts on the half-space, which causes oscillations in the embedded structure, and the sensor system registers the response. The problem of assessing the dynamic stress-strain state (DSSS) is solved using Fourier transforms with the principle of limiting absorption. As an example, the behavior of an embedded massive structure of an underground pedestrian crossing under the influence of a dynamic surface source on a multilayer medium is considered, as well as instrumental support of the sensor system. The solution in the form of stress, strain and displacement fields is obtained and compared with the experimental data. The frequency-dependent characteristics of the system are determined and the possibility of determining the DSSS by a shock pulse is shown.
机译:在任意动态负荷的框架中考虑了埋地建筑物动态响应结构监测和建模的实际问题。结果可用于设计地下运输建筑,交叉路口,埋藏水库和基础。在现有方法中,登记对动态动作的响应的传感器系统不允许有效地解释信号,而无需了解动态特征和谐振现象。考虑了层状介质中掩埋物体的动态问题的分析和数值解。多层半空间是一组刚性互连的层,其特征在于弹性特性。在一定距离处,任意动态负载在半空间上起作用,这导致嵌入式结构中的振荡,传感器系统寄存响应。使用傅里叶变换来解决评估动态应力 - 应变状态(DSSS)的问题,其具有限制性吸收的原理。作为示例,考虑了在多层介质上的动态表面源的影响下的地下行人交叉的嵌入式行人交叉的行为,以及传感器系统的仪器支持。获得应力,应变和位移场的形式的溶液,并与实验数据进行比较。确定系统的频率相关特性,并示出了通过冲击脉冲确定DSSS的可能性。

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