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Interpreting temperature-strain data from mesoscale clathrate experiments

机译:从中尺度包合物实验中解释温度-应变数据

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摘要

Gas hydrates may play an important role in global climate change, carbon sequestration, energy production and seafloor stability. However, formation and dissociation pathways in geologically complex systems are poorly defined. We present a new approach to processing large amounts of data from a LUNA distributed sensing system (DSS) in the seafloor process simulator (SPS) at Oak Ridge National Laboratory to monitor and visualize gas hydrate formation and dissociation in heterogeneous sediments. The DSS measures relative temperature/strain change with a high spatial resolution allowing the heat of reaction during gas hydrate formation/dissociation to be used to locate clathrate processes in space and time within the vessel. Optical fibers are placed in the sediment following an Archimedean spiral design and the position of each sensor is determined iteratively over the arc length using Newton's method. The DSS data are then gridded with a natural neighbor interpolation algorithm to allow contouring. The locations of sensors on the fiber were verified with hot and cold stimuli in known locations. Software was developed to produce temperature/strain linear and polar plots, which aid in locating significant hydrate formation/dissociation events. Results from an experiment using a vertically split column of sand and silt clearly showed initial hydrate formation in the sand, followed by slow encroachment into the silt. Similar systems and data processing techniques could be used for monitoring of hydrates in natural environments or in any situation where a hybrid temperature/strain index is useful.
机译:天然气水合物可能在全球气候变化,碳固存,能源生产和海底稳定中发挥重要作用。但是,在地质复杂系统中的形成和解离途径定义不清。我们提出了一种新方法,用于在Oak Ridge国家实验室的海底过程模拟器(SPS)中处理来自LUNA分布式传感系统(DSS)的大量数据,以监视和可视化非均质沉积物中的天然气水合物形成和分解。 DSS以较高的空间分辨率测量相对温度/应变变化,从而使气体水合物形成/分解过程中的反应热可用于确定容器内空间和时间的包合物过程。按照阿基米德螺旋设计,将光纤放置在沉积物中,并使用牛顿法在弧长上迭代确定每个传感器的位置。然后,使用自然邻域插值算法将DSS数据网格化以允许轮廓化。传感器在光纤上的位置在已知位置通过热和冷刺激进行验证。开发了软件以产生温度/应变线性和极坐标图,这有助于定位重要的水合物形成/解离事件。使用垂直分开的沙子和淤泥柱的实验结果清楚地表明,沙子中最初形成了水合物,随后缓慢侵蚀到淤泥中。类似的系统和数据处理技术可用于在自然环境中或在有用混合温度/应变指数的任何情况下监控水合物。

著录项

  • 来源
    《Computers & geosciences》 |2012年第1期|p.62-67|共6页
  • 作者单位

    School of Geology and Geophysics, University of Oklahoma, 100 E. Boyd, Norman, OK 73019, United States, Biosdences Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831, United States;

    Materials Science and Technology Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831, United States;

    Biosdences Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831, United States;

    School of Geology and Geophysics, University of Oklahoma, 100 E. Boyd, Norman, OK 73019, United States, Biosdences Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831, United States;

    Biosdences Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831, United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fiber bragg gratings; gas hydrate; seafloor stability; temperature-strain data; distributed sensing;

    机译:光纤布拉格光栅天然气水合物;海底稳定性温度-应变数据;分布式感测;

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