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Permeability variation and anisotropy of gas hydrate-bearing pressure-core sediments recovered from the Krishna-Godavari Basin, offshore India

机译:印度海上克里希纳 - 戈达瓦里盆地回收的渗透性变异和气体水合物压力核心沉积物的各向异性

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摘要

Permeability measurements were conducted on gas hydrate-bearing pressure-core sediments recovered from the Krishna-Godavari Basin during India's National Gas Hydrate Program Expedition 02. Pressure cores collected in the deep seabed of the Indian Ocean were cut and stored under high pressure and low temperature on the D/V Chikyu using pressure core analyzing tools. A total of 25,1.2-m storage chambers were transferred to Japan from India for pressure core studies using pressure-core analysis tools at the National Institute of Advanced Industrial Science and Technology. The sediment core's pressure and temperature were maintained within the hydrate stability conditions during the entire process of transfer and loading into a triaxial testing apparatus called TACIT to preserve the hydrate, which can simulate the in-situ effective stress state under triaxial conditions. The hydrate saturation of the samples was in the range of 50-90%. It was found that the initial effective water permeability was in range of 0.01 mD to tens of mD, depending on the hydrate saturation and the mean particle size of the host sediment. The hydrate pore space morphology is also a critical factor, and results suggest hydrates are forming in the pore centers of sand grains as pore filling, but also as a sediment grain coating. In a first for gas hydrate-bearing pressure cores, the permeability anisotropy was established via vertical and horizontal flow tests combined with a pore fluid flow simulation. The horizontal/vertical permeability ratio was found to be 4. Additionally, the effective stress dependency of permeability was investigated by performing flow tests at different effective stresses. Due to decreasing porosity and particle crushing, the permeability dropped by approximately 90% for an effective stress increase of 10 MPa.
机译:在印度国家天然气水合物计划探索期间,在克里希纳 - 戈达瓦里盆地中回收的气体水合物压力沉积物进行渗透率测量。在印度海洋深海底收集的压力核心被切割并在高压和低温下储存在D / V Chikyu上使用压力核心分析工具。共有25,1.2米的储存室从印度转移到日本,用于使用国家先进的工业科学技术研究所的压力核心分析工具对日本的压力核心研究。在整个转移和装载到称为碎裂的三轴检测装置中,将沉积物核心的压力和温度保持在水合物稳定性条件下,以保持水合物,其可以在三轴条件下模拟原位有效应力状态。样品的水合物饱和度在50-90%的范围内。发现初始有效的水渗透率范围为0.01md至数十MD,这取决于宿主沉积物的水合物饱和度和平均粒度。水合物孔隙空间形态也是一个关键因素,结果表明水合物在孔颗粒的孔中心形成为孔隙填充,也是沉积物晶粒涂层。在第一用于气体水合物的压力核心中,通过垂直和水平流量试验建立渗透性各向异性,与孔隙流体流动模拟结合。发现水平/垂直渗透率为4.此外,通过在不同有效应力下进行流动测试来研究渗透性的有效应力依赖性。由于孔隙率和粒子破碎的降低,渗透率约为90%,以便有效应力增加10MPa。

著录项

  • 来源
    《Marine and Petroleum Geology》 |2019年第2019期|共13页
  • 作者单位

    Natl Inst Adv Ind Sci &

    Technol Environm &

    Energy Dept Res Inst Energy Frontier Methane Hydrate Prod Technol Res Grp Sapporo Hokkaido Japan;

    Natl Inst Adv Ind Sci &

    Technol Environm &

    Energy Dept Res Inst Energy Frontier Methane Hydrate Prod Technol Res Grp Sapporo Hokkaido Japan;

    Natl Inst Adv Ind Sci &

    Technol Environm &

    Energy Dept Res Inst Energy Frontier Methane Hydrate Prod Technol Res Grp Sapporo Hokkaido Japan;

    Natl Inst Adv Ind Sci &

    Technol Environm &

    Energy Dept Res Inst Energy Frontier Methane Hydrate Prod Technol Res Grp Sapporo Hokkaido Japan;

    Natl Inst Adv Ind Sci &

    Technol Environm &

    Energy Dept Res Inst Energy Frontier Methane Hydrate Prod Technol Res Grp Sapporo Hokkaido Japan;

    Natl Inst Adv Ind Sci &

    Technol Environm &

    Energy Dept Res Inst Energy Frontier Methane Hydrate Prod Technol Res Grp Sapporo Hokkaido Japan;

    US Geol Survey Woods Hole MA 02543 USA;

    US Geol Survey Woods Hole MA 02543 USA;

    Oil &

    Nat Gas Corp Mumbai Maharashtra India;

    AIST Environm &

    Energy Dept Res Inst Energy Frontier Tsukuba Ibaraki Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋资源与开发;
  • 关键词

    Methane hydrate; Triaxial test; Permeability; Anisotropy; Pressure core; NGHP-02;

    机译:甲烷水合物;三轴试验;渗透性;各向异性;压力核心;NGHP-02;

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