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Gas hydrate saturations estimated from pore-and fracture-filling gas hydrate reservoirs in the Qilian Mountain permafrost China

机译:从祁连山多年冻土的孔隙和裂缝填充天然气水合物储层估算天然气水合物饱和度

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摘要

Accurate calculation of gas hydrate saturation is an important aspect of gas hydrate resource evaluation. The effective medium theory (EMT model), the velocity model based on two-phase medium theory (TPT model), and the two component laminated media model (TCLM model), are adopted to investigate the characteristics of acoustic velocity and gas hydrate saturation of pore- and fracture-filling reservoirs in the Qilian Mountain permafrost, China. The compressional wave (P-wave) velocity simulated by the EMT model is more consistent with actual log data than the TPT model in the pore-filling reservoir. The range of the gas hydrate saturation of the typical pore-filling reservoir in hole DKXX-13 is 13.0~85.0%, and the average value of the gas hydrate saturation is 61.9%, which is in accordance with the results by the standard Archie equation and actual core test. The P-wave phase velocity simulated by the TCLM model can be transformed directly into the P-wave transverse velocity in a fracture-filling reservoir. The range of the gas hydrate saturation of the typical fracture-filling reservoir in hole DKXX-19 is 14.1~89.9%, and the average value of the gas hydrate saturation is 69.4%, which is in accordance with actual core test results.
机译:天然气水合物饱和度的准确计算是天然气水合物资源评价的重要方面。采用有效介质理论(EMT模型),基于两相介质理论的速度模型(TPT模型)和两组分层压介质模型(TCLM模型)来研究声波速度和天然气水合物饱和度的特征。祁连山多年冻土孔隙和裂缝充填油藏在孔隙填充储层中,EMT模型模拟的压缩波(P波)速度比TPT模型更符合实际测井数据。孔DKXX-13中典型孔隙填充储层的天然气水合物饱和度范围为13.0〜85.0%,天然气水合物饱和度平均值为61.9%,这与标准Archie方程的结果一致和实际的核心测试。 TCLM模型模拟的P波相速度可以直接转换为裂缝填充油藏中的P波横向速度。 DKXX-19井中典型裂缝填充油藏的水合物饱和度范围为14.1〜89.9%,水合物饱和度平均值为69.4%,与实际岩心试验结果相符。

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