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首页> 外文期刊>Resource Geology >Application of AVO Analysis to Seismic Data for Detection of Gas below Methane Hydrate Stability Zone in Nankai Trough Area
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Application of AVO Analysis to Seismic Data for Detection of Gas below Methane Hydrate Stability Zone in Nankai Trough Area

机译:AVO分析在地震数据中探测南开槽区甲烷水合物稳定带以下气体的应用

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For the purpose of development of methane hydrate, occurring in the deep marine subsurface, as a resource, the most important issue is to understand the methane hydrate system (generation, migration and accumulation) as well as to delineate the methane hydrate reservoir properties. We have applied the Amplitude Versus Offset (AVO) analysis to the seismic data acquired in the Nankai Trough, offshore Japan, in order to confirm the occurrence of gas just below the methane hydrate-bearing zone, assuming that gas will show a so-called Class-3 AVO response. Knowledge of the amount and occurrence of gas in the sediment below methane hydrate-bearing zone is one of the keys to understand the methane hydrate system. We have utilized the qualitative analysis of AVO methodology to delineate how gas is located below the BSR, which is thought to be the reflection event from the interface between the methane hydrate-bearing zone and the underlying gas-bearing zone. In the region of MITI Nankai Trough Well PSW-3, we observe two BSRs separated by 25 ms. After AVO modeling using well data, we applied AVO attribute analysis and attribute crossplot analysis to the seismic data. Finally we applied an offset-amplitude analysis to CMP gather data at specific locations to confirm the results of AVO attribute analysis. The AVO analysis shows that there is very little gas located in the underlying sediment below methane hydrate-bearing zone. This result supports the fact that we could not obtain any clear evidence of gas occurrence just below the methane hydrate-bearing zone in the Nankai Trough well drilling.
机译:为了开发深海水下地下甲烷水合物作为一种资源,最重要的问题是了解甲烷水合物系统(生成,运移和积累),并勾勒出甲烷水合物储层的性质。我们已将振幅对偏移(AVO)分析应用于在日本近海Nankai槽中获得的地震数据,以确认在甲烷水合物含气层正下方的天然气的发生,假设该气体将显示出所谓的3级AVO响应。了解甲烷水合物含气层以下沉积物中气体的数量和发生是了解甲烷水合物系统的关键之一。我们利用AVO方法的定性分析来描述气体如何位于BSR下方,这被认为是甲烷水合物含气区与下伏气体含气区之间界面的反射事件。在MITI南开槽PSW-3井的区域中,我们观察到两个BSR间隔25 ms。使用井数据进行AVO建模后,我们将AVO属性分析和属性交叉图分析应用于地震数据。最后,我们对特定位置的CMP收集数据应用了偏移幅度分析,以确认AVO属性分析的结果。 AVO分析表明,在甲烷水合物含气带下方的沉积物中几乎没有气体。这一结果支持了以下事实:在南开槽钻井中,就在甲烷水合物含气层以下,我们无法获得任何明显的天然气发生证据。

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