俄勒冈州odp1247水合物脊天然气水合物储层甲烷供应及形成过程预测

ZHENG Zi-Han, CAO Yun-Cheng, CHEN Duo-Fu
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引用次数: 1

摘要

海相沉积物中天然气水合物储层的形成主要受甲烷供应和沉积埋藏的控制。基于甲烷在天然气水合物体系中的质量守恒,建立了考虑溶解甲烷扩散、孔隙水平流和原位产甲烷供给的天然气水合物形成数值模型。俄勒冈州水合物脊ODP 1247现场的研究表明,分子扩散和孔隙水平流输送的溶解甲烷是天然气水合物形成的主要甲烷来源,而原位甲烷生成对天然气水合物储层的贡献很小。考虑1.67 Ma以来沉积速率的变化,对天然气水合物储层进行了评价。模型结果表明,沉积速率的变化导致1247 ODP天然气水合物储层大小变化不大。计算的水合物饱和度为~ 0% ~ 3%,与压力取心的实测值一致。
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PREDICTION OF THE METHANE SUPPLY AND FORMATION PROCESS OF GAS HYDRATE RESERVOIR AT ODP1247, HYDRATE RIDGE, OFFSHORE OREGON

The formation of gas hydrate reservoir in marine sediments is mainly controlled by methane supply and sedimentary burial. Based on the mass conservation of methane in gas hydrate system, a numerical model of gas hydrate formation was established considering the methane supplied by dissolved methane diffusion, pore water advection, and in situ methanogenesis. A case study of ODP site 1247 at the Hydrate Ridge, offshore Oregon shows that dissolved methane transported by molecular diffusion and pore water advection is the major supply of methane for gas hydrate formation, while in situ methanogenesis contributes little to the gas hydrate reservoir. The gas hydrate reservoir was also evaluated considering the changes of sedimentation rate since 1.67 Ma. Our model results show that the variations of sedimentation rate lead to little change in the size of gas hydrate reservoir at ODP 1247. The calculated hydrate saturation amounts to ∼0%∼3%, which is consistent with the measured values using pressure coring.

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