CSEDI: Collaborative Res.: Toward Mapping 3D Variations in Temperature and Chemical Composition in the Upper Mantle through a Mineral Physics-based Inversion of Seismic Waveforms
CSEDI: Collaborative Res.: Toward Mapping 3D Variations in Temperature and Chemical Composition in the Upper Mantle through a Mineral Physics-based Inversion of Seismic Waveforms
批准号:
0111824
负责人:
Shun-ichiro Karato
金额:
$6.49万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-08-15 至 2003-07-31
中文摘要
Romanowicz Karato这是加州大学伯克利分校的地震学家和耶鲁大学的矿物物理学家共同开展的一项研究,旨在探索直接反演地震长周期波形数据的可行性,以了解上地幔有效温度和主要元素化学的3D变化。有效温度将包括温度和水分的影响,这不能简单地从地震数据中分离出来。水的含量可能对流变学有很大的影响,因此对地幔的动力学有重大影响。他们将使用矿物物理框架来描述这些不同因素的贡献,并提供相关偏导数的估计。常量元素化学的作用与水的作用不同,因为水对滞弹性有很大的影响,而常量元素化学对滞弹性没有影响。另一方面,滞弹性对温度的依赖性比对地震速度的依赖性更强。这项研究的核心是这样一种猜想,即在理论考虑的支持下,对地震波形进行成分C和(有效)温度T*等物理参数的一步反演,应该会产生比首先反演速度和Q结构,然后根据物理参数解释所获得的图的标准方法更稳定的结果。后者目前被3D上地幔Q的低分辨率所抑制,这是由于大部分未建模的但显著的聚焦和散射效应污染了幅度。在一步反演法中,C和T的影响在反演矩阵元中耦合,而在标准方法中,只有振幅取决于滞弹性项,而相位和振幅都取决于弹性项,这导致了所推导的Q分布的强烈偏差。一步法中方程的耦合特性,再加上振幅对T*的强烈敏感性(通过滞弹性项),应该可以抵消现有矿物物理偏导数的近似特性和聚焦理论处理不当造成的误差。
英文摘要
Romanowicz Karato This is a collaborative study between seismologists at UC Berkeley and mineral physicists at Yale University, to explore the feasibility of inverting seismic long period waveform data directly for 3D variations in effective temperature and major element chemistry in the upper mantle. Effective temperature will include the effects of temperature and water content, which cannot be easily separated from seismic data alone. Water content is likely to have large effects on rheology and therefore has significant influence on the dynamics of the Earth's mantle. They will use the mineral physics framework to delineate contributions from these various factors and provide estimates of relevant partial derivatives. Effects of major element chemistry can be distinguished from that of water, because water has a large influence on anelasticity whereas major element chemistry does not. On the other hand anelasticity is more strongly dependent on temperature than seismic velocity. At the heart of this study is the conjecture, supported by theoretical considerations, that the one step inversion of seismic waveforms for physical parameters such as composition C and (effective) temperature T*, should yield more stable results than the standard approach of first inverting for velocity and Q structure and then interpreting the obtained maps in terms of physical parameters. The latter is currently inhibited by the poor resolution in 3D upper mantle Q, due to contamination of amplitudes by largely unmodelled, but significant, effects of focusing and scattering. In the one step inversion the effects of C and T* are coupled in the inversion matrix elements, whereas in the standard approach, only the amplitudes depend on anelastic terms, while both phase and amplitudes depend on the elastic ones, leading to strong biases in the distribution of Q inferred. The coupled character of the equations in the one step approach, combined with the strong sensitivity of amplitudes to T* (through anelastic terms) should offset the approximate character of the available mineral physics partial derivatives and the errors due to inadequate theoretical treatment of focusing.
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批准号:2001339
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An experimental study on grain-size evolution during phase transformations in the mantle transition zone and its influence on rheological properties
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财政年份:2015
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Experimental studies on plastic deformation of the lower mantle materials
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批准号:1520006
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项目类别:Continuing Grant
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资助金额:$40.5万
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财政年份:2015
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CSEDI Collaborative Research: Understanding the nature of water and melt transport between the transition zone and the lower mantle combining mineral physics and seismology
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批准号:1464003
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CSEDI Collaborative Research: Grand Challenge for Experimental Study of Plastic Deformation Under Deep Earth Conditions
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批准号:1361327
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资助金额:$43.1万
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财政年份:2014
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CSEDI: Understanding the structure of the continental upper mantle through the use of magnetotelluric and seismic observations
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批准号:1160932
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资助金额:$12.0万
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依托单位:
An Experimental Study on the Strength of the Lithosphere: Large-strain shear deformation experiments of olivine + orthopyroxene aggregates
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批准号:1214861
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资助金额:$32.0万
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财政年份:2012
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依托单位:
Experimental studies on rheological properties of transition zone minerals
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批准号:1015336
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资助金额:$34.94万
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依托单位:
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批准号:0968858
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资助金额:$57.02万
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依托单位:
Electrical conductivity of synthetic pyrolite under deep upper mantle and transition zone conditions
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批准号:0911465
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资助金额:$40.0万
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依托单位:
Point Defects and Transport Properties of a Lower Mantle Phase (Mg,Fe)O: The Role of Hydrogen and Ferric Iron
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依托单位:
Collaborative Research: CSEDI--Grand Challenge for Experimental Study of Plastic Deformation Under Deep Earth Conditions
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财政年份:2007
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依托单位:
Effects of hydrogen on the electrical conductivity in upper mantle and transition zone minerals
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批准号:0608579
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依托单位:
Plastic Deformation and Lattice-Preferred Orientation in Wadsleyite: Experimental Constraints on the Rheology and Dynamics of Mantle Transition Zone
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批准号:0510682
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依托单位:
Effects of Water on Electrical Conductivity in Majorite
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批准号:0439623
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资助金额:$0.0万
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Water-Induced Fabric Transitions in Olivine
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依托单位:
Acquisition of a Scanning Electron Microscope at Yale Geology and Geophysics
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批准号:0216784
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资助金额:$34.43万
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Collaborative Research: COMPRES Grand Challenge for Experimental Study of Plastic Deformation under Deep Earth Conditions
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批准号:0136181
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资助金额:$95.92万
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依托单位:
海外基金