Collaborative Research: Mantle Dynamics, Lithospheric Structure, and Topographic Evolution of the Southeastern US Continental Margin
合作研究:地幔动力学、岩石圈结构和美国东南部大陆边缘的地形演化
基本信息
- 批准号:1251515
- 负责人:
- 金额:$ 19.78万
- 依托单位:
- 依托单位国家:美国
- 项目类别:Continuing Grant
- 财政年份:2013
- 资助国家:美国
- 起止时间:2013-05-01 至 2017-04-30
- 项目状态:已结题
- 来源:
- 关键词:
项目摘要
The surface geology of the eastern United States is extraordinary in its complexity. This complexity reflects a wide range of tectonic processes that have operated in the region over the past billion years, including episodes of subduction and rifting associated with two complete cycles of supercontinent assembly and breakup. A record of these processes is preserved in the geological units and topography we see at the surface today. It is unknown, however, how the crust and mantle lithosphere have responded to these tectonic forces over time, and whether and how the geological units preserved at the surface relate to deeper structures. The persistence of Appalachian topography through time remains a major outstanding problem in the study of landscape evolution. There is an ongoing interplay among erosion, topography, rock type, and mantle flow at depth that controls the structures we see at the surface today. However, understanding the complex role played by each of these factors requires better constraints on the history of topographic change and its relationship to the deep structure and dynamics of the mantle. Our project, known as the Mid-Atlantic Geophysical Integrative Collaboration (MAGIC), aims to address these fundamental questions about the geophysical evolution of the eastern United States by studying surface processes, crustal and lithospheric structure, and deep mantle flow across Virginia, West Virginia, and Ohio.MAGIC involves a collaborative effort among seismologists, geodynamicists, and geomorphologists. We are undertaking a two-year deployment of 28 broadband seismometers in a dense linear transect from the Atlantic coast to the continental interior. In combination with EarthScope USArray Transportable Array (TA) stations our experiment geometry will provide an opportunity to image isotropic and anisotropic crust and mantle structure from the coast to the continental interior in unprecedented detail, using techniques such as shear wave splitting, receiver function analysis, and tomographic inversions. The dense linear array allows us to target small-scale crustal and lithospheric variations for imaging. Our geodynamical modeling effort focuses on quantitatively testing several different hypotheses for the pattern of mantle flow by using 3-D, time-dependent, numerical models to make testable predictions about mantle anisotropy and surface topographic change, which will be tested against results from the seismology and geomorphology components of the project. The geomorphology component of the project uses quantitative stream profile data and cosmogenic isotopes to understand the history of erosion rates and topographic change throughout the Appalachian region. Insights into uplift history and the approach to equilibrium among lithology, topography, and erosion (and their spatial variation) will be compared to inferences on the mantle flow field and deep crustal and lithospheric structure gained from the geodynamics and seismology components of the project. Insight from all three efforts will be combined to obtain a vertically integrated picture of tectonic processes from the surface through the crust and mantle lithosphere to the asthenosphere and deeper mantle. The education and outreach component of this project focuses on the involvement of undergraduates in scientific research, opportunities for graduate students to mentor and advise undergraduate students, and forging ties with colleges and universities (including many primarily undergraduate institutions) in our study region that are not currently involved with the EarthScope initiative.
美国东部的地表地质极其复杂。这种复杂性反映了过去十亿年来该地区发生的广泛构造过程,包括与超大陆组装和分裂的两个完整周期相关的俯冲和裂谷事件。这些过程的记录保存在我们今天在地表看到的地质单元和地形中。然而,目前尚不清楚地壳和地幔岩石圈如何随着时间的推移对这些构造力作出反应,以及地表保存的地质单元是否以及如何与更深的结构相关。阿巴拉契亚地形随时间的持续存在仍然是景观演化研究中的一个主要突出问题。侵蚀、地形、岩石类型和深层地幔流之间持续相互作用,控制着我们今天在地表看到的结构。然而,要了解这些因素所发挥的复杂作用,需要更好地约束地形变化的历史及其与地幔深层结构和动力学的关系。我们的项目被称为中大西洋地球物理综合合作(MAGIC),旨在通过研究西弗吉尼亚州弗吉尼亚州的地表过程、地壳和岩石圈结构以及深层地幔流来解决有关美国东部地球物理演化的基本问题、和俄亥俄州。MAGIC 涉及地震学家、地球动力学家和地貌学家之间的协作努力。我们正在为期两年的时间内,在从大西洋海岸到大陆内陆的密集线性横断面上部署 28 个宽带地震仪。与 EarthScope USArray 可移动阵列 (TA) 站相结合,我们的实验几何结构将提供一个机会,利用剪切波分裂、接收器函数分析、和断层扫描反演。密集的线性阵列使我们能够针对小规模的地壳和岩石圈变化进行成像。我们的地球动力学建模工作重点是通过使用 3-D、时间相关的数值模型来定量测试地幔流模式的几种不同假设,以对地幔各向异性和表面地形变化做出可测试的预测,并将根据地震学结果进行测试和项目的地貌组成部分。该项目的地貌学部分使用定量河流剖面数据和宇宙成因同位素来了解整个阿巴拉契亚地区侵蚀率和地形变化的历史。对隆起历史的见解以及岩性、地形和侵蚀(及其空间变化)之间的平衡方法将与从该项目的地球动力学和地震学部分获得的地幔流场以及深部地壳和岩石圈结构的推论进行比较。所有三项工作的见解将结合起来,以获得从地表到地壳和地幔岩石圈到软流圈和更深地幔的构造过程的垂直整合图景。该项目的教育和推广部分侧重于本科生参与科学研究、研究生指导和建议本科生的机会,以及与我们研究区域内非大学的学院和大学(包括许多主要本科院校)建立联系。目前正在参与 EarthScope 计划。
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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Maureen Long其他文献
Improving Attachment Security in Early Childhood Intervention: A Framework From Constructivist Grounded Theory
改善幼儿期干预中的依恋安全:建构主义扎根理论的框架
- DOI:
10.1177/10538151221142794 - 发表时间:
2022-12-13 - 期刊:
- 影响因子:1.4
- 作者:
S. L. Alexander;M. Frederico;Maureen Long - 通讯作者:
Maureen Long
Scattering of light by molecules over a rough surface.
分子在粗糙表面上散射光。
- DOI:
- 发表时间:
2010 - 期刊:
- 影响因子:1.9
- 作者:
Maureen Long;M. Khine;A. Kim - 通讯作者:
A. Kim
Attachment and Children with Disabilities: Knowledge and Views of Early Intervention Professionals
依恋与残疾儿童:早期干预专业人员的知识和观点
- DOI:
10.1017/cha.2018.38 - 发表时间:
2018-09-27 - 期刊:
- 影响因子:0
- 作者:
S. L. Alexander;M. Frederico;Maureen Long - 通讯作者:
Maureen Long
A simple three-dimensional vortex micromixer
- DOI:
10.1063/1.3089816 - 发表时间:
2009-03-30 - 期刊:
- 影响因子:4
- 作者:
Maureen Long;M. Sprague;A. Grimes;Brent D. Rich;M. Khine - 通讯作者:
M. Khine
Children’s experience of sport in Australia
澳大利亚儿童的运动体验
- DOI:
- 发表时间:
2017 - 期刊:
- 影响因子:0
- 作者:
Lynne McPherson;Maureen Long;M. Nicholson;N. Cameron;Prue Atkins;M. Morris - 通讯作者:
M. Morris
Maureen Long的其他文献
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{{ truncateString('Maureen Long', 18)}}的其他基金
Conference: Interior of the Earth Gordon Research Conference and Seminar
会议:地球内部戈登研究会议及研讨会
- 批准号:
2317347 - 财政年份:2023
- 资助金额:
$ 19.78万 - 项目类别:
Standard Grant
Collaborative Research: CSEDI: Integrating Seismic Anisotropy, Mantle Flow, and Rock Deformation in Subduction Zone Settings
合作研究:CSEDI:在俯冲带环境中整合地震各向异性、地幔流和岩石变形
- 批准号:
2153688 - 财政年份:2022
- 资助金额:
$ 19.78万 - 项目类别:
Continuing Grant
Collaborative Research: How have orogenesis, rifting, and recent mantle dynamics shaped the lithosphere beneath the New England Appalachians?
合作研究:造山运动、裂谷和最近的地幔动力学如何塑造新英格兰阿巴拉契亚山脉下方的岩石圈?
- 批准号:
2147536 - 财政年份:2022
- 资助金额:
$ 19.78万 - 项目类别:
Continuing Grant
Collaborative Research: Testing for Channel Flow and Ductile Extrusion In The Southeastern New England Appalachians Using An Integrated Geophysical and Geological Approach
合作研究:使用综合地球物理和地质方法测试新英格兰东南部阿巴拉契亚山脉的河道流动和延性挤压
- 批准号:
2220234 - 财政年份:2022
- 资助金额:
$ 19.78万 - 项目类别:
Standard Grant
Collaborative Research: Towards improved imaging of the outermost core through determination of the effects of lowermost mantle heterogeneity and anisotropy
合作研究:通过确定最低地幔异质性和各向异性的影响来改善最外层地核的成像
- 批准号:
2026917 - 财政年份:2020
- 资助金额:
$ 19.78万 - 项目类别:
Standard Grant
New approaches to shear wave splitting tomography
剪切波分裂断层扫描的新方法
- 批准号:
1820815 - 财政年份:2019
- 资助金额:
$ 19.78万 - 项目类别:
Continuing Grant
Modification of lithospheric structure via subduction, terrane accretion, and rifting: A case study beneath Connecticut
通过俯冲、地体增生和裂谷改变岩石圈结构:康涅狄格州下方的案例研究
- 批准号:
1800923 - 财政年份:2018
- 资助金额:
$ 19.78万 - 项目类别:
Standard Grant
Constraining lowermost mantle flow through observations and models of seismic anisotropy
通过地震各向异性观测和模型约束最低地幔流
- 批准号:
1547499 - 财政年份:2016
- 资助金额:
$ 19.78万 - 项目类别:
Continuing Grant
Anisotropic Properties of the Mid-lithospheric Discontinuity Beneath Central and Eastern North America
北美中部和东部下方岩石圈中部不连续面的各向异性特性
- 批准号:
1358325 - 财政年份:2014
- 资助金额:
$ 19.78万 - 项目类别:
Continuing Grant
Collaborative Research: A community seismic experiment targeting the pre-, syn-, and post-rift evolution of the Mid-Atlantic US margin
合作研究:针对美国大西洋中部边缘裂谷前、同裂谷和裂谷后演化的社区地震实验
- 批准号:
1347310 - 财政年份:2013
- 资助金额:
$ 19.78万 - 项目类别:
Continuing Grant
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马里亚纳弧前不同产状橄榄岩属性及地幔楔演化过程研究
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- 批准年份:2023
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相似海外基金
Collaborative Research: As above so below: Quantifying the role of simultaneous LLSVPs and continents on Earth's cooling history using numerical simulations of mantle convection
合作研究:如上所述,如下:使用地幔对流数值模拟来量化同时发生的 LLSVP 和大陆对地球冷却历史的作用
- 批准号:
2310325 - 财政年份:2023
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合作研究:用低温热年代学测试伊比利亚-纽芬兰边缘地幔折返的时间和方向
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2405731 - 财政年份:2023
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2310829 - 财政年份:2023
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Collaborative Research: Experimental and computational constraints on the isotope fractionation of Mossbauer-inactive elements in mantle minerals
合作研究:地幔矿物中穆斯堡尔非活性元素同位素分馏的实验和计算约束
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2246686 - 财政年份:2023
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合作研究:地幔矿物中穆斯堡尔非活性元素同位素分馏的实验和计算约束
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