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首页> 外文期刊>Marine Geophysical Researches >Evidence of gas hydrate accumulation and its resource estimation in Andaman deep water basin from seismic and well log data
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Evidence of gas hydrate accumulation and its resource estimation in Andaman deep water basin from seismic and well log data

机译:基于地震和测井资料的安达曼深水盆地天然气水合物聚集证据及其资源估算

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摘要

2D and 3D seismic reflection and well log data from Andaman deep water basin are analyzed to investigate geophysical evidence related to gas hydrate accumulation and saturation. Analysis of seismic data reveals the presence of a bottom simulating reflector (BSR) in the area showing all the characteristics of a classical BSR associated with gas hydrate accumulation. Double BSRs are also observed on some seismic sections of area (Area B) that suggest substantial changes in pressure-temperature (P-T) conditions in the past. The manifestation of changes in P-T conditions can also be marked by the varying gas hydrate stability zone thickness (200-650 m) in the area. The 3D seismic data of Area B located in the ponded fill, west of Alcock Rise has been pre-stack depth migrated. A significant velocity inversion across the BSR (1,950-1,650 m/s) has been observed on the velocity model obtained from pre-stack depth migration. The areas with low velocity of the order of 1,450 m/s below the BSR and high amplitudes indicate presence of dissociated or free gas beneath the hydrate layer. The amplitude variation with offset analysis of BSR depicts increase in amplitude with offset, a similar trend as observed for the BSR associated with the gas hydrate accumulations. The presence of gas hydrate shown by logging results from a drilled well for hydrocarbon exploration in Area B, where gas hydrate deposit was predicted from seismic evidence, validate our findings. The base of the hydrate layer derived from the resistivity and acoustic transit-time logs is in agreement with the depth of hydrate layer interpreted from the pre-stack depth migrated seismic section. The resistivity and acoustic transit-time logs indicate 30-m-thick hydrate layer at the depth interval of 1,865-1,895 m with 30 % hydrate saturation. The total hydrate bound gas in Area B is estimated to be 1.8 × 10~(10) m~3, which is comparable (by volume) to the reserves in major conventional gas fields.
机译:分析了来自安达曼深水盆地的2D和3D地震反射和测井数据,以调查与天然气水合物聚集和饱和有关的地球物理证据。地震数据分析表明,该区域存在底部模拟反射器(BSR),该反射器显示了与天然气水合物聚集相关的经典BSR的所有特征。在区域(B区)的某些地震剖面上也观察到双BSR,表明过去的压力-温度(P-T)条件发生了重大变化。 P-T条件的变化也可以通过该地区天然气水合物稳定带厚度(200-650 m)的变化来表示。位于Alcock Rise以西的池塘填充区中的B区的3D地震数据已经进行了叠前深度偏移。在从叠前深度偏移获得的速度模型上,已观察到整个BSR的明显速度反转(1,950-1,650 m / s)。低于BSR约1,450 m / s的低速度且振幅高的区域表明在水合物层下存在离解或游离气体。 BSR偏移量分析的幅度变化表示幅度随偏移量的增加,这与与天然气水合物聚集相关的BSR观察到的趋势类似。测井结果表明,在B区的油气勘探中,天然气水合物的存在证明了我们的发现。由电阻率和声波传播时间测井得出的水合物层的基底与叠前深度偏移地震剖面解释的水合物层深度一致。电阻率和声波传播时间测井表明在1,865-1,895 m的深度间隔处有30 m厚的水合物层,水合物饱和度为30%。 B区中与水合物结合的总气体估计为1.8×10〜(10)m〜3,与主要常规气田的储量相当(按体积计)。

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