本章节简介:地震分辨率

Q2 Earth and Planetary Sciences Leading Edge Pub Date : 2023-01-01 DOI:10.1190/tle42010007.1
M. Aharchaou, R. Neelamani, Chengbo Li
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引用次数: 0

摘要

现代地震学诞生于100多年前(1889年),当时发现了第一个远震记录,研制出了地震仪(Ben-Menahem, 1995)。1921年,Clarence Karcher领导的一个小组在俄克拉荷马城进行了第一次反射地震仪的现场测试,地球勘探发生了革命性的变化(Dragoset, 2005)。该实验表明,可以利用地震数据对地下进行成像。随着地震方法在寻找碳氢化合物方面开始建立起良好的记录,业务开始蓬勃发展。在过去的一个世纪里,地震方法已经成为勘探地球物理的基石,为我们提供了越来越精确的地下特征,使我们能够更好地发现和描述碳氢化合物前景、地热异常、海底危险、含水层等等。
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Introduction to this special section: Seismic resolution
The science of modern seismology was born more than 100 years ago (1889) when the first teleseismic record was identified and the seismograph was developed ( Ben-Menahem, 1995 ). In 1921, earth exploration was revolutionized when a team led by Clarence Karcher conducted the first field tests of the reflection seismograph in Oklahoma City ( Dragoset, 2005 ). That experiment showed that the subsurface can be imaged using seismic data. Businesses boomed as the seismic method started establishing its track record in finding hydrocarbons. Over the last century, the seismic method has emerged as the cornerstone of exploration geophysics, providing us with increasingly accurate characterizations of the subsurface and enabling us to better discover and describe hydrocarbon prospects, geothermal anomalies, seafloor hazards, aquifers, and much more.
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来源期刊
Leading Edge
Leading Edge Earth and Planetary Sciences-Geology
CiteScore
3.10
自引率
0.00%
发文量
180
期刊介绍: THE LEADING EDGE complements GEOPHYSICS, SEG"s peer-reviewed publication long unrivalled as the world"s most respected vehicle for dissemination of developments in exploration and development geophysics. TLE is a gateway publication, introducing new geophysical theory, instrumentation, and established practices to scientists in a wide range of geoscience disciplines. Most material is presented in a semitechnical manner that minimizes mathematical theory and emphasizes practical applications. TLE also serves as SEG"s publication venue for official society business.
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