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DigitalCrust - a 4D data system of material properties for transforming research on crustal fluid flow

机译:DigitalCrust-一种用于转换地壳流体流动研究的材料特性的4D数据系统

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Fluid circulation in the Earth's crust plays an essential role in surface, near surface, and deep crustal processes. Flow pathways are driven by hydraulic gradients but controlled by material permeability, which varies over many orders of magnitude and changes over time. Although millions of measurements of crustal properties have been made, including geophysical imaging and borehole tests, this vast amount of data and information has not been integrated into a comprehensive knowledge system. A community data infrastructure is needed to improve data access, enable large-scale synthetic analyses, and support representations of the subsurface in Earth system models. Here, we describe the motivation, vision, challenges, and an action plan for a community-governed, four-dimensional data system of the Earth's crustal structure, composition, and material properties from the surface down to the brittle-ductile transition. Such a system must not only be sufficiently flexible to support inquiries in many different domains of Earth science, but it must also be focused on characterizing the physical crustal properties of permeability and porosity, which have not yet been synthesized at a large scale. The DigitalCrust is envisioned as an interactive virtual exploration laboratory where models can be calibrated with empirical data and alternative hypotheses can be tested at a range of spatial scales. It must also support a community process for compiling and harmonizing models into regional syntheses of crustal properties. Sustained peer review from multiple disciplines will allow constant refinement in the ability of the system to inform science questions and societal challenges and to function as a dynamic library of our knowledge of Earth's crust.
机译:地壳中的流体循环在地表,近地表和深地壳过程中起着至关重要的作用。流动路径由水力梯度驱动,但受材料渗透率控制,材料渗透率变化多个数量级并随时间变化。尽管已经进行了数以百万计的地壳特性测量,包括地球物理成像和井眼测试,但是大量的数据和信息尚未集成到全面的知识系统中。需要一个社区数据基础设施来改善数据访问,进行大规模的综合分析并支持地球系统模型中地下的表示。在这里,我们描述了一个由社区控制的,从地表到脆性-延性转变的地壳结构,成分和物质属性的三维数据系统的动机,愿景,挑战和行动计划。这种系统不仅必须具有足够的灵活性以支持地球科学许多不同领域的研究,而且还必须集中于表征渗透率和孔隙率的物理地壳特性,而这些特性尚未得到大规模合成。可将DigitalCrust设想为一个交互式虚拟勘探实验室,在该实验室中,可以使用经验数据对模型进行校准,并可以在一定范围的空间范围内测试替代假设。它还必须支持社区程序,以将模型汇编和协调成地壳特性的区域综合。来自多个学科的持续同行评审将使该系统不断改进告知科学问题和社会挑战的能力,并能够作为我们了解地壳知识的动态库。

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