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Geological controls on the occurrence of gas hydrate from core, downhole log, and seismic data in the Shenhu area, South China Sea

机译:南海神湖地区岩心,井下测井和地震资料中天然气水合物发生的地质控制

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Multi-channel seismic reflection data, well logs, and recovered sediment cores have been used in this study to characterize the geologic controls on the occurrence of gas hydrate in the Shenhu area of the South China Sea. The concept of the "gas hydrate petroleum system" has allowed for the systematic analysis of the impact of gas source, geologic controls on gas migration, and the role of the host sediment in the formation and stability of gas hydrates as encountered during the 2007 Guangzhou Marine Geological Survey Gas Hydrate Expedition (GMGS-1) in the Shenhu area. Analysis of seismic and bathymetric data identified seventeen sub-linear, nearparallel submarine canyons in this area. These canyons, formed in the Miocene, migrated in a northeasterly direction, and resulted in the burial and abandonment of canyons partially filled by coarse-grained sediments. Downhole wireline log (DWL) data were acquired from eight drill sites and sediment coring was conducted at five of these sites, which revealed the presence of suitable reservoirs for the occurrence of concentrated gas hydrate accumulations. Gas hydrate-bearing sediment layers were identified from well log and core data at three sites mainly within silt and silt clay sediments. Gas hydrate was also discovered in a sand reservoir at one site as inferred from the analysis of the DWL data. Seismic anomalies attributed to the presence of gas below the base of gas hydrate stability zone, provided direct evidence for the migration of gas into the overlying gas hydrate-bearing sedimentary sections. Geochemical analyses of gas samples collected from cores confirmed that the occurrence of gas hydrate in the Shenhu area is controlled by the presence thermogenic methane gas that has migrated into the gas hydrate stability zone from a more deeply buried source. (C) 2014 Elsevier B.V. All rights reserved.
机译:在这项研究中,已使用多通道地震反射数据,测井和回收的沉积物岩心来表征南海神湖地区天然气水合物发生的地质控制。 “天然气水合物石油系统”的概念允许系统分析天然气来源,地质控制对天然气运移的影响,以及宿主沉积物在2007年广州奥运会期间遇到的天然气水合物的形成和稳定性中的作用。神湖地区的海洋地质调查天然气水合物考察(GMGS-1)。对地震和测深数据的分析确定了该地区的17条亚线性,近乎平行的海底峡谷。这些在中新世形成的峡谷向东北方向迁移,导致部分被粗粒沉积物填充的峡谷被埋葬和废弃。从八个钻探地点获取了井下电缆测井(DWL)数据,并在其中五个地点进行了沉积取心,这表明存在合适的储集层,可用于天然气水合物的浓集。从主要在粉砂和粉砂黏土沉积物中的三个位置的测井和岩心数据中识别出了含天然气水合物的沉积层。根据DWL数据的分析推断,在一个地点的一个砂层储层中也发现了天然气水合物。地震异常归因于天然气水合物稳定区底部以下的天然气的存在,为天然气向含天然气水合物的沉积层中的迁移提供了直接证据。从岩心采集的天然气样品的地球化学分析证实,神户地区天然气水合物的发生是受存在的产热甲烷气控制的,该甲烷气已从更深的埋藏源迁移到天然气水合物稳定区。 (C)2014 Elsevier B.V.保留所有权利。

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