钻探以研究活动构造和岩浆活动的过程

IF 1.6 Q3 GEOSCIENCES, MULTIDISCIPLINARY
J. Shervais, James P. Evans, V. Toy, J. Kirkpatrick, A. Clarke, J. Eichelberger
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引用次数: 0

摘要

摘要协同钻井工作是研究与断层和火山有关的活动构造和岩浆过程的重要方法。美国国家科学基金会(NSF)最近赞助了一系列研讨会,以确定未来大陆钻探工作的性质。作为这个系列的一部分,我们召集了一个研讨会,探讨如何利用大陆科学钻探来更好地了解活跃的构造和岩浆过程。该研讨会于2013年5月在犹他州帕克城举行,来自7个国家的41名调查人员参加了会议。参与者被要求为检查问题给出令人信服的科学依据,这些问题可以通过大陆科学钻探和相关现场调查的协调方案来解决。他们还被要求根据研讨会前提交的白皮书,对一系列拟议的钻井项目进行评估。研究断层和断裂带过程的与会者强调了两个在未来科学钻探研究中具有令人兴奋潜力的主要主题:(1)地震旋回;(2)断裂带的力学和结构。推荐的项目以断裂的基本力学过程和控制为目标,范围从诱发地震和地震起爆到剥离断层力学和断裂带流体流动的研究。从事活火山活动研究的与会者确定了五个主题:火山喷发周期;喷发可持续性、近场应力和系统恢复;火山喷发的危险;地球物理模型的验证;以及与其他地球系统的相互作用。建议的项目解决可转移到其他火山系统的问题,例如改进确定喷发历史和限制浅火山口区域流变结构的方法。研究化学地球动力学的与会者确定了四个主要主题:大火成岩省(lip)、海洋岛屿、大陆热点轨迹和裂谷,以及收敛的板块边缘(俯冲带)。这次研讨会汇集了具有广泛科学经验和兴趣的不同科学家群体。一个特别的优势是,参与其中的既有将发起和实施这些新研究项目的早期职业科学家,也有在科学钻探和活动构造研究方面有多年经验的资深研究人员。上面列出的每一个主题和问题都对社会有直接的好处,包括改进危害评估,直接监测主动预警系统,可再生和不可再生资源和能源的开发,以及预测自然灾害的环境影响,强调科学钻探将在未来的科学和社会发展中发挥核心作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Drilling to investigate processes in active tectonics and magmatism
Abstract. Coordinated drilling efforts are an important method to investigate active tectonics and magmatic processes related to faults and volcanoes. The US National Science Foundation (NSF) recently sponsored a series of workshops to define the nature of future continental drilling efforts. As part of this series, we convened a workshop to explore how continental scientific drilling can be used to better understand active tectonic and magmatic processes. The workshop, held in Park City, Utah, in May 2013, was attended by 41 investigators from seven countries. Participants were asked to define compelling scientific justifications for examining problems that can be addressed by coordinated programs of continental scientific drilling and related site investigations. They were also asked to evaluate a wide range of proposed drilling projects, based on white papers submitted prior to the workshop. Participants working on faults and fault zone processes highlighted two overarching topics with exciting potential for future scientific drilling research: (1) the seismic cycle and (2) the mechanics and architecture of fault zones. Recommended projects target fundamental mechanical processes and controls on faulting, and range from induced earthquakes and earthquake initiation to investigations of detachment fault mechanics and fluid flow in fault zones. Participants working on active volcanism identified five themes: the volcano eruption cycle; eruption sustainability, near-field stresses, and system recovery; eruption hazards; verification of geophysical models; and interactions with other Earth systems. Recommended projects address problems that are transferrable to other volcanic systems, such as improved methods for identifying eruption history and constraining the rheological structure of shallow caldera regions. Participants working on chemical geodynamics identified four major themes: large igneous provinces (LIPs), ocean islands, continental hotspot tracks and rifts, and convergent plate margins (subduction zones). This workshop brought together a diverse group of scientists with a broad range of scientific experience and interests. A particular strength was the involvement of both early-career scientists, who will initiate and carry out these new research programs, and more senior researchers with many years of experience in scientific drilling and active tectonics research. Each of the themes and questions outlined above has direct benefits to society, including improving hazard assessment, direct monitoring of active systems for early warning, renewable and non-renewable resource and energy exploitation, and predicting the environmental impacts of natural hazards, emphasizing the central role that scientific drilling will play in future scientific and societal developments.
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来源期刊
Scientific Drilling
Scientific Drilling GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
2.50
自引率
0.00%
发文量
12
审稿时长
27 weeks
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