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Near-surface seismic reflection applications

机译:近地表地震反射应用

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摘要

Nonintrusive methods of gaining knowledge about the Earth's subsurface comprise several of the procedures used routinely in near-surface seismology, including reflection, refraction, and surface-wave analysis. During the early 1980s the advent of digital engineering seismographs designed for shallow, high-resolution surveys spurred significant improvements in engineering, mining, and environmental reflection seismology. Commonly, the reflection method is used in conjunction with other geophysical and geological tools and a well-planned drilling verification effort. To the extent that near-surface seismic methods can constrain shallow stratigraphy, geologic structure, engineering properties, and relative permeability, they are useful in groundwater, mining, environmental site characterization, and other civil engineering applications. Much of the improvement in shallow seismic surveys is related to improvements in instrumentation. Challenges remain, however, in developing ways to process near-surface seismic data sets that may contain attributes not seen in deeper petroleum surveys.
机译:获得有关地球地下知识的非侵入性方法包括近地表地震学中常规使用的几种程序,包括反射,折射和面波分析。在1980年代初期,为浅层,高分辨率勘测设计的数字工程地震仪的出现极大地改善了工程,采矿和环境反射地震学。通常,反射方法与其他地球物理和地质工具以及精心计划的钻探验证工作结合使用。就近地表地震方法可以限制浅层地层,地质结构,工程特性和相对渗透率的程度而言,它们可用于地下水,采矿,环境现场特征描述和其他土木工程应用。浅层地震勘测的许多改进与仪器的改进有关。但是,在开发处理近地表地震数据集的方法上仍然存在挑战,这些数据集可能包含在更深的石油调查中看不到的属性。

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