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A seismic study to investigate the prospect of gas hydrate in Mahanadi deep water basin, northeastern continental margin of India

机译:印度东北部陆缘玛哈纳迪深水盆地天然气水合物勘探的地震研究

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The presence of gas hydrates, one of the new alternative energy resources for the future, along the Indian continental margins has been inferred mainly from bottom simulating reflectors (BSR) and the gas stability zone thickness mapp ing. Gas hydrate reserves in Krishna Godawari Basin have been established with the help of gashydrate related proxies inferred from multidisciplinary investigations. In the present study, an analysis of 3D seismic data of nearly 3,420 km~2 area of Mahanadi deep water basin was performed in search of seismic proxies related with the existence of natural gas hydrate in the region. Analysis depicts the presence of BSR-like features over a large areal extent of nearly 250 km~2 in the central western part of the basin, which exhibit all characteristics of a classical BSR associated with gas hydrate accumulation in a region. The observed BSR is present in a specific area restricted to a structural low at the Neogene level. The coherency inversion of pre-stack time migration (PSTM) gathers shows definite inversion of interval velocity across the BSR interface which indicates hydrate bearing sediments overlying the free gas bearing sediments. The amplitude versus offset analysis of PSTM gathers shows increase of amplitude with offset, a common trend as observed in BSR associated with gas hydrate accumulation. Results suggest the possibility of gas hydrate accumulation in the central part of the basin specifically in the area of structural low at the Neogene level. These results would serve as preliminary information for selecting prospective gas hydrate accumulation areas for further integrated or individual study from geophysical, geological, geochemical and microbiological perspectives for confirmation of gas hydrate reserves in the area. Further, on the basis of these results it is envisaged that biogenic gas might have been generated in the region which under suitable temperature and pressure conditions might have been transformed into the gas hydrates, and therefore, an integrated study comprising geophysical, geological, geochemical and microbiological data is suggested to establish the gas hydrate reserves in Mahanadi deep water basin.
机译:天然气水合物的存在是印度大陆边缘的一种新的未来替代能源,主要是通过模拟底部反射层(BSR)和天然气稳定带厚度测绘得出的。克里希纳·戈达瓦里盆地的天然气水合物储量是在多学科研究得出的与天然气水合物有关的代理的帮助下建立的。在本研究中,对Mahanadi深水盆地近3,420 km〜2区域的3D地震数据进行了分析,以寻找与该地区天然气水合物存在有关的地震代理。分析表明,在盆地中部西部近250 km〜2的大面积范围内都存在类似BSR的特征,这些特征表现出与该地区天然气水合物聚集相关的经典BSR的所有特征。观察到的BSR存在于特定区域,该区域仅限于新基因水平的结构低位。叠前时间偏移(PSTM)道集的相干反演表明,BSR界面上的速度速度是绝对反演的,这表明含水合物的沉积物覆盖了含游离气的沉积物。 PSTM道集的振幅与偏移量分析显示,振幅随偏移量增加,这是在BSR中观察到的与天然气水合物聚集相关的常见趋势。结果表明,天然气水合物在盆地中部蓄积的可能性,特别是在新近纪水平低构造的区域。这些结果将为选择潜在的天然气水合物聚集区提供初步信息,以便从地球物理,地质,地球化学和微生物学的角度进一步综合或单独研究,以确认该地区的天然气水合物储量。此外,根据这些结果,可以设想到在适当的温度和压力条件下可能已将生物气转化为天然气水合物的地区产生了生物气,因此,一项综合研究包括地球物理,地质,地球化学和建议通过微生物学数据建立马哈纳迪深水盆地的天然气水合物储量。

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