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首页> 外文期刊>Journal of the Geological Society of India >Seismic attenuation for characterization of gas hydrate reservoir in Krishna-Godavari basin, eastern Indian margin
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Seismic attenuation for characterization of gas hydrate reservoir in Krishna-Godavari basin, eastern Indian margin

机译:克里希纳 - 戈达瓦里盆地天然气水合物储层表征的地震衰减

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AbstractGas hydrates have received global attention as a possible alternative non-conventional energy resource. Hence, the detection, characterization and quantification of gas hydrates are very important for evaluating the resource potential. Presence of gas hydrates in sediments above the bottom simulating reflector or BSR is associated with low attenuation or high quality factor (Q), whereas, free gas bearing sediments below the BSR exhibit high attenuation or low seismic Q. Here the logarithm spectral ratio (LSR) method is applied to marine seismic reflection data along two cross lines (18 and 46) in the Krishna-Godavari (KG) basin in eastern Indian margin, where gas hydrates have already been established by drilling/coring. The interval Qs is calculated for three sedimentary layers (A, B, and C) bounded by the seafloor, BSR, one reflector above and another reflector below the BSR at some common depth points (CDPs) to study the attenuation characteristics of sediments across the BSR. The estimated average interval Q (160) for the hydrate bearing sediments (layer B) is much higher than the average interval Q (80) for both the loose clayey sediments (Layer A) and underlying free gas saturated sediments (layer C). This demonstrates that estimation of seismic quality factor Q can be used for characterization of gas hydrate reservoir.
机译:<标题>抽象 ara>天然气水合物已作为可能的替代非传统能源的全球关注。因此,气体水合物的检测,表征和量化对于评估资源潜力非常重要。底部模拟反射器或BSR上方的沉积物中的气体水合物与低衰减或高质量因子(Q)相关,而游离气体轴承沉积物在BSR下方表现出高衰减或低地震Q.这里是对数光谱比(LSR )方法应用于沿着西印度边缘的Krishna-Godavari(kg)盆中的两个十字线(18和46)的海洋地震反射数据,其中通过钻孔/芯已经建立了天然气水合物。间隔Qs是针对由海底,BSR,一个反射器,上方的三个沉积层(A,B和C)计算的三个沉积层(A,B和C),以及在一些常见的深度点(CDPS)下方BSR下方的另一反射器,以研究沉积物的衰减特性BSR。用于水合物轴承沉积物(层B)的估计平均间隔Q(160)远高于松散粘土沉积物(层A)和下面的游离气体饱和沉积物(层C)的平均间隔Q(80)。这表明地震质量因子Q的估计可用于储气水合物贮存器的表征。

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