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Gas Hydrate System of Shenhu Area, Northern South China Sea:Wire-line Logging, Geochemical Results and Preliminary Resources Estimates

机译:南海北部神户地区天然气水合物系统:有线测井,地球化学结果和初步资源估算

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Shenhu Area, one of the most favorable locations for gas hydrates in the north slope of South China Sea, is located in the Pearl River Mouth Basin. The geological setting, temperature and pressure conditions are favorable for the formation of gas hydrate. Analysis of the geochemistry of sediments from large piston cores showed that the sulfate-methane interface (SMI) is from 10 to 27 mbsf in the research area. Methane was the dominant hydrocarbon gas in all gas analyses. The δ~(13)C_(CH4) values of headspace gases from the gravity piston core sediments ranged from -74.3‰ to -46.2‰, with the majority being less than -55‰. It is likely that the methane of gas hydrate originated from in-situ microbial activity.The drilling recovered high concentrations of hydrate (maximum 26-48%, with the gas composition of >99% CH_4) in a disseminated form in foram-rich clay sediments. The wire-line log showed a very distinctive positive anomaly in resistivity and sonic velocity in the interval of the hydrate layer. It was also interesting that the caliper log was smoother through this interval and the density log also showed a small decrease. From the combined well-log and geochemical data, the hydrate-bearing sediments were determined to range from 10 meters to 25 meters in thickness, and to concentrate just above the base of the gas hydrate stability zone (BGHSZ).The estimate of the total amount of methane trapped in the drilling-confirmed 15 km~2 extent of the Shenhu hydrate deposit is about 160×10~8m~3at a 50% probability. Given the size of this accumulation, the Chinese government and industry have a keen interest in the commercial development potential of the resource.
机译:神湖地区是南海北坡天然气水合物最有利的地区之一,位于珠江口盆地。地质环境,温度和压力条件有利于天然气水合物的形成。对大活塞芯沉积物的地球化学分析表明,研究区的硫酸盐-甲烷界面(SMI)为10到27 mbsf。在所有气体分析中,甲烷是主要的烃类气体。重力活塞芯沉积物顶空气体的δ〜(13)C_(CH4)值在-74.3‰至-46.2‰之间,大部分小于-55‰。天然气水合物中的甲烷很可能起源于原位微生物活性。 钻井在富孔的粘土沉积物中以散布形式回收了高浓度的水合物(最大26-48%,气体成分> 99%CH_4)。测井曲线在水合物层的间隔内显示出非常独特的电阻率和声速正异常。同样有趣的是,在此间隔内卡尺测井曲线更加平滑,密度测井曲线也显示出较小的下降。根据测井和地球化学的综合数据,可以确定含水合物的沉积物的厚度范围为10米至25米,并在天然气水合物稳定带(BGHSZ)底部上方集中。 以钻探确认的神户水合物矿床15 km〜2范围内截留的甲烷总量估计为160×10〜8m〜3,概率为50%。考虑到这种积累的规模,中国政府和工业界对该资源的商业开发潜力怀有浓厚的兴趣。

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