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High-Precision Forward Analysis and Field Test of Boulder Detection on Zero-Offset Elastic Wave Method in Shield Tunnel

机译:屏蔽隧道零偏移弹性波法的高精度前进分析与现场试验

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摘要

Efficient and accurate boulder detection technology is essential for shield tunneling safely under complex floodplain geological conditions. The traditional seismic reflection method is not suitable for complex geological conditions and small targets near the surface, the elastic wave reflection method based on zero-offset observation is proposed in this article. Forward is the basis of inversion, a high-order staggered grid finite difference algorithm based on least-squares optimization (LS-SGFD) is established, which has the advantages of higher accuracy and smaller dispersion. Three typical geological models are designed, and the elastic wave reflection characteristics of the method proposed in this paper and the traditional method are systematically analyzed. From the dual perspectives of field experiment and engineering application, the effectiveness of zero-offset observation for the detection of boulders is discussed, and the basic criteria for boulder identification are given. Research shows that this method has good results in detecting boulders on the surface, and it has certain reference significance for similar projects.
机译:高效且精确的巨石检测技术对于在复杂的洪泛区地质条件下安全的屏蔽隧道掘进至关重要。传统地震反射方法不适用于靠近表面附近的复杂地质条件和小靶,本文提出了基于零偏移观察的弹性波反射方法。前进是反演的基础,建立了一种基于最小二乘优化(LS-SGFD)的高阶交错的电网有限差分算法,其精度更高,色散较小。设计了三种典型的地质模型,并系统地分析了本文提出的方法的弹性波反射特性和传统方法。从现场实验和工程应用的双重视角,讨论了对巨石检测的零偏移观察的有效性,给出了巨石识别的基本标准。研究表明,该方法在检测表面上的巨石方面具有良好的结果,并且对类似项目具有一定的参考意义。

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