首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Constraints on Gas Hydrate Distribution and Morphology in Vestnesa Ridge, Western Svalbard Margin, Using Multicomponent Ocean-Bottom Seismic Data
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Constraints on Gas Hydrate Distribution and Morphology in Vestnesa Ridge, Western Svalbard Margin, Using Multicomponent Ocean-Bottom Seismic Data

机译:使用多组分海底地震数据,对Vestnesa Ridge的天然气水合物分布和形态的限制

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Gas hydrates occur within sediments on the western Svalbard continental margin and the Vestnesa Ridge, a large sediment drift that extends in a west-northwest direction from the margin toward the mid-ocean ridge. We acquired multicomponent ocean-bottom seismic (OBS) data at 10 locations on the crest area of the eastern segment of the Vestnesa Ridge, an area with active gas seepage. P and S wave velocities are estimated using traveltime inversion, and self-consistent approximation/differential effective medium rock physics modeling is used to estimate gas hydrate and free gas saturation at OBS stations. We apply 1-D full waveform inversion at a selected OBS station to study detailed variations of P wave velocity near the bottom simulating reflection (BSR). High interval P wave velocity (Vp ≈ 1.73-1.82 km/s) and S wave velocity (>0.35 km/s) are observed in a layer above the BSR and low interval P wave velocity (Vp ≈ 1.28-1.53 km/s) in a layer below the BSR. We estimate 10-18% gas hydrate and 1.5-4.1% free gas saturation at different OBS stations in a layer above and below the BSR, respectively. We find significant variation in gas hydrate and free gas saturation across faults suggesting a structural control on the distribution of gas hydrate and free gas in the Vestnesa Ridge. Differences in gas hydrate saturation derived from P wave velocities and earlier estimates obtained from electromagnetic surveys indicate the presence of gas hydrates in faults and fractures. Moreover, beneath some OBS sites, the combined study of P and S waves, resistivity and seismic quality factor (Q), suggests the coexistence of free gas and gas hydrates.
机译:天然气水合物在西方斯瓦尔巴堡大陆边缘和Vestnesa岭的沉积物中发生,这是一个大的沉积物漂移,这些沉积物漂移在西北方向延伸到中海山脊的边缘。我们在10个地区获得了多组分的海底地震(OBS)数据,位于Vestnesa岭的东部地区的10个地区,该区域有活性气体渗流的区域。使用旅行时间反转估计P和S波速度,并且使用自一致的近似/差分有效介质岩石物理学建模用于估计在Obs站的天然气水合物和自由气体饱和度。我们在所选OBS站应用1-D全波形反转,研究底部模拟反射(BSR)附近的P波速度的详细变化。在BSR高于BSR和低间隔P波速度的层中观察到高间隔P波速度(VP≈1.1.73-1.82km/ s)和s波速度(> 0.35km / s)(vp≈1.28-1.53​​mm/ s)在BSR下方的层中。我们分别估计10-18%的天然气水合物和1.5-4.1%在BSR上方和下方的不同OBS站下的自由气体饱和度。我们在横跨故障中发现气体水合物和自由气体饱和度的显着变化,表明对Vestnesa脊的天然气水合物和空气的分布结构控制。从电磁调查获得的P波速度和早期估计的天然气水合物饱和的差异表明存在缺陷和骨折中的气体水合物。此外,在一些OBS网站下方,P和S波的组合研究,电阻率和地震质量因子(Q),表明自由气和天然气水合物的共存。

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