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Near-field Effects On Array-based Surface Wave Methodswith Active Sources

机译:具有有源源的基于阵列的面波方法的近场效应

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摘要

Although the capabilities of engineering surface wave methods have improved in recent years due to several advances, a number of issues still require study to further improve the capabilities of modern surface wave methods. Near-field effects, which are one of these issues, have been studied for traditional surface wave methods with two receivers, and several criteria to mitigate the effects have been recommended. However, these criteria are not applicable to surface wave methods with multiple receivers. Moreover, the criteria are not quantitatively based and do not account for different types of soil profiles, which strongly influence near-field effects. A new study of near-field effects on surface wave methods with multiple receivers was conducted via numerical simulations, laboratory simulations, and field tests. Quantitatively based criteria for near-field effects in different soil profiles are presented using two normalized parameters developed in this study. There was excellent agreement between numerical and experimental results, and it was found that underestimation of measured Rayleigh phase velocities was the major symptom of near-field effects.
机译:尽管近年来由于一些进步,工程表面波方法的功能有所提高,但仍需要研究许多问题以进一步提高现代表面波方法的功能。对于具有两个接收器的传统表面波方法,已经研究了近场效应,这是这些问题之一,并且已建议了几种缓解效应的标准。但是,这些标准不适用于具有多个接收器的表面波方法。而且,该标准不是基于数量的,并且没有考虑不同类型的土壤剖面,这会严重影响近场效应。通过数值模拟,实验室模拟和现场测试,对具有多个接收器的表面波方法的近场效应进行了新的研究。使用在这项研究中开发的两个归一化参数,提出了基于定量的不同土壤剖面中近场效应的标准。数值结果和实验结果之间有很好的一致性,并且发现低估测量的瑞利相速度是近场效应的主要症状。

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