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Characterization of gas hydrate distribution using conventional 3D seismic data in the Pearl River Mouth Basin, South China Sea

机译:南海珠江口盆地利用常规3D地震资料表征天然气水合物分布

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A new 3D seismic reflection data volume acquired in 2012 has allowed for the detailed mapping and characterization of gas hydrate distribution in the Pearl River Mouth Basin in the South China Sea. Previous studies of core and logging data showed that gas hydrate occurrence at high concentrations is controlled by the presence of relatively coarse-grained sediment and the upward migration of thermogenic gas from the deeper sediment section into the overlying gas hydrate stability zone (BGHSZ); however, the spatial distribution of the gas hydrate remains poorly defined. We used a constrained sparse spike inversion technique to generate acousticimpedance images of the hydrate-bearing sedimentary section from the newly acquired 3D seismic data volume. High-amplitude reflections just above the bottom-simulating reflectors (BSRs) were interpreted to be associated with the accumulation of gas hydrate with elevated saturations. Enhanced seismic reflections below the BSRs were interpreted to indicate the presence of free gas. The base of the BGHSZ was established using the occurrence of BSRs. In areas absent of well-developed BSRs, the BGHSZ was calculated from a model using the inverted P-wave velocity and subsurface temperature data. Seismic attributes were also extracted along the BGHSZ that indicate variations reservoir properties and inferred hydrocarbon accumulations at each site. Gas hydrate saturations estimated from the inversion of acoustic impedance of conventional 3D seismic data, along with well-log-derived rock-physics models were also used to estimate gas hydrate saturations. Our analysis determined that the gas hydrate petroleum system varies significantly across the Pearl River Mouth Basin and that variability in sedimentary properties as a product of depositional processes and the upward migration of gas from deeper thermogenic sources control the distribution of gas hydrates in this basin.
机译:2012年获得的新的3D地震反射数据量可以对南海珠江口盆地的天然气水合物分布进行详细的制图和表征。先前对岩心和测井数据的研究表明,高浓度的天然气水合物的发生是由相对较粗粒的沉积物的存在和热成因气体从较深的沉积物部分向上迁移到上覆的天然气水合物稳定带(BGHSZ)所控制的。但是,天然气水合物的空间分布仍然定义不清。我们使用受限的稀疏峰值反演技术从新获得的3D地震数据量生成含水合物沉积段的声阻抗图像。底部模拟反射器(BSR)上方的高振幅反射被认为与饱和水合物的聚集有关。 BSR下方增强的地震反射被解释为表明存在游离气体。 BGHSZ的基础是利用BSR的出现建立的。在缺乏发达的BSR的地区,BGHSZ是使用反P波速度和地下温度数据从模型中计算出来的。还沿着BGHSZ提取了地震属性,这些属性指示储层特性的变化和每个站点的推测油气成藏。从常规3D地震数据的声阻抗反演中估算的天然气水合物饱和度,以及由测井得出的岩石物理学模型,也可用于估算天然气水合物饱和度。我们的分析确定,整个珠江口盆地的天然气水合物石油系统变化很大,并且沉积特征的变化是沉积过程的产物,而来自较深热源的天然气的向上运移控制了盆地中天然气水合物的分布。

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