Identification of Gas Sand Horizons of the Rashidpur Structure, Surma Basin, Bangladesh, Using 2D Seismic Interpretation

IF 1 Q3 GEOCHEMISTRY & GEOPHYSICS
A. Islam, Md. Ahosan Habib
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引用次数: 4

Abstract

A total of 13 seismic sections were used for 2D seismic interpretation in order to assess the subsurface geometry of gas sand horizons and hydrocarbon prospect of the Rashidpur structure, Surma Basin, Bangladesh. Out of five reflectors, two selected reflectors were mapped for the study. The top of the Upper Gas Sand (R3) reflector was elongated in N-S with the axis swinging slightly to the east on the northern plunge. North-South trending thrust fault was identified in the eastern part which is parallel to the axial line of the structure. The reflection patterns of the gas sand horizons were parallel to each other and similar in nature. The reflection coefficients were positive at the base and negative at the top of the each gas sand horizons. Velocity dropped from 2562 m/s to 2177 m/s in the Upper Gas Sand (R3) and 4320 m/s to 3413 m/s in the Lower Gas Sand (R5) reflector. Bright spot and amplitude anomalies were identified on the top of the both gas sand horizons. The result depicts that the shape of the gas sand horizons is asymmetric anticline. The structure is compressed and elongated NNW-SSE trending anticline. The study reveals hydrocarbon potentiality of the structure.
利用二维地震解释识别孟加拉国Surma盆地Rashidpur构造气砂层位
为了评估孟加拉国Surma盆地Rashidpur构造的气砂层位地下几何形状和油气远景,共使用了13个地震剖面进行二维地震解释。在五个反射器中,选择了两个反射器用于研究。上部气砂(R3)反射器顶部呈N-S型拉长,轴线在北倾处略微向东摆动。东部发育与构造轴线平行的南北向逆冲断层。气砂层的反射模式相互平行,性质相似。各气砂层位底部反射系数为正,顶部反射系数为负。在上部含气砂区(R3),速度从2562 m/s降至2177 m/s,下部含气砂区(R5),速度从4320 m/s降至3413 m/s。在两个气砂层位顶部发现了亮点和振幅异常。结果表明,气砂层位形状为不对称背斜。构造为NNW-SSE走向的压缩伸长背斜。研究揭示了该构造的油气潜力。
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来源期刊
International Journal of Geophysics
International Journal of Geophysics GEOCHEMISTRY & GEOPHYSICS-
CiteScore
1.50
自引率
0.00%
发文量
12
审稿时长
21 weeks
期刊介绍: International Journal of Geophysics is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in all areas of theoretical, observational, applied, and computational geophysics.
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