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A study of electrical and thermal properties and their use to detect natural gas hydrates in ocean sediments.

机译:研究电学和热学性质及其在检测海洋沉积物中天然气水合物中的用途。

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摘要

Natural gas hydrates may exist in deep ocean sediments in the presence of gas. Since recovery of hydrate samples is very difficult using conventional geotechnical sampling operations the development of in situ detection methods becomes essential.; In this research the electrical resistivity and thermal conductivity of hydrates were studied experimentally using tetrahydrofuran as a hydrate former. An experimental apparatus was designed for this purpose and an automated control system was developed to form cylindrical specimens, freezing them unidirectionally from top to bottom. Massive hydrates and sediment-hydrate mixtures were formed and studied.; The electrical resistivity of all hydrate specimens increased drastically upon hydrate formation to values that varied from 2 {dollar}times{dollar} 10{dollar}sp5{dollar} to 2 {dollar}times{dollar} 10{dollar}sp4{dollar} Ohm{dollar}cdot{dollar}m for frequencies ranging from 100 to 1000 Hz. The presence of brine in the specimens reduced the electrical resistivity and masked the frequency effects.; The thermal conductivity was determined for steady state conditions in the cylindrical specimens by solving the three dimensional axisymmetric heat conduction problem and inverting the temperature data. The thermal conductivity of massive hydrate specimens varied from 0.18 to 0.48 Wm{dollar}sp{lcub}-1{rcub}{dollar}K{dollar}sp{lcub}-1{rcub}{dollar} Sand- and clay-hydrate specimens had a thermal conductivity similar to water saturated specimens, increasing with decreasing porosity.; An electrical resistivity probe appears to be a promising method of hydrate detection in ocean sediments where the hydrate layer may be represented by a resistive layer in a conductive earth. Based on the studies conducted the resolution of the resistivity and thickness is very satisfactory.; Hydrate formation in sediments was modelled by a moving heat source and the change of sediment temperatures due to hydrate formation was calculated based on the rate of hydrate formation and the thermal properties of the sediments. The results indicate that local changes of the geothermal gradient in conjunction with other measurements may be used to detect hydrates.
机译:天然气存在时,天然气水合物可能存在于深海沉积物中。由于使用常规的岩土取样操作很难回收水合物样品,因此现场检测方法的发展变得至关重要。在这项研究中,以四氢呋喃为水合物形成剂,对水合物的电阻率和导热系数进行了实验研究。为此目的设计了一种实验设备,并开发了一种自动控制系统以形成圆柱形试样,将试样从上到下单向冻结。形成并研究了大量的水合物和沉积物-水合物混合物。当水合物形成时,所有水合物样品的电阻率都急剧增加,其值从2 {dollars} {dollar} 10 {dollar} sp5 {dollar}到2 {dollar} times {dollar} 10 {dollar} sp4 {dollar}欧姆{dollar} cdot {dollar} m适用于100到1000 Hz的频率。样品中盐水的存在降低了电阻率并掩盖了频率效应。通过解决三维轴对称导热问题并反转温度数据,确定圆柱状样品在稳态条件下的导热系数。大块水合物样品的导热系数从0.18到0.48 Wm {dollar} sp {lcub} -1 {rcub} {dollar} K {dollar} sp {lcub} -1 {rcub} {dollar}砂和粘土水合物样品的热导率类似于水饱和的样品,随着孔隙率的降低而增加。电阻率探针似乎是海洋沉积物中水合物检测的一种有前途的方法,其中水合物层可以用导电土中的电阻层表示。根据所进行的研究,电阻率和厚度的分辨率非常令人满意。通过移动的热源模拟沉积物中水合物的形成,并根据水合物形成的速率和沉积物的热性质计算由于水合物形成而引起的沉积物温度变化。结果表明,地热梯度的局部变化结合其他测量可用于检测水合物。

著录项

  • 作者

    Tzirita, Antiopy.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Civil.; Geotechnology.; Physical Oceanography.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 286 p.
  • 总页数 286
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;地质学;海洋物理学;
  • 关键词

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