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Supporting hydrocarbon exploration in new venture areas with optical remote sensing

机译:通过光学遥感支持新风险地区的油气勘探

摘要

In past time, exploration geologists mainly used Earth Observation systems for basin-wide analysis of gravimetry, magnetomerty, structural faults, lithology and land-cover. After two decades of research, nowadays multispectral and hyperspectral remote sensing represent a cutting-edge technology in the oil and gas industry. The application fields of optical remote sensing not only range from the monitoring of the oilfields to the evaluation of pollution, but also to hydrocarbon exploration. With reference to exploration activities, the observation of the territory from above into several different wavelengths is able to supply inestimable geophysical information related to the microseepage effect, different and complementary to tradition geophysical methods.udIt is almost accepted that many of the oil and gas fields leak light hydrocarbon gases along nearly vertical pathways and, thus, their detection with multi/hyperspectral imaging can support the detection of active petroleum systems. Indeed, several independent oil companies are using satellite and airborne observations for reducing exploration risks in new venture areas and for optimizing their seismic surveys.udThis study shows some examples of microseepage-related geochemical and geobotanical alterations detected in several different environments, from sandy desert to vegetated savannah, both using airborne hyperspectral data and multispectral satellite time series. All the examples analyze real onshore concession blocks in Africa and Asia and results clearly show a correlation between the spectral signals recorded form remote with in situ measures, well logs, the knowledge of the subsurface and the position of known oilfields.
机译:过去,勘探地质学家主要将地球观测系统用于盆地范围内的重力分析,磁阻,结构断层,岩性和土地覆盖物分析。经过二十多年的研究,如今,多光谱和高光谱遥感已成为石油和天然气行业中的一项前沿技术。光学遥感的应用领域不仅包括油田监测,污染评估,还包括油气勘探。关于勘探活动,从上方观察到几个不同的波长范围内的领土能够提供与微渗漏效应有关的,不可估量的地球物理信息,这与传统的地球物理方法是不同的和互补的。 ud几乎所有石油和天然气都被接受气田沿几乎垂直的路径泄漏轻质烃类气体,因此,利用多/高光谱成像进行检测可以支持对活性石油系统的检测。确实,一些独立的石油公司正在使用卫星和空中观测来降低在新风险地区的勘探风险并优化其地震勘测。 ud本研究显示了一些实例,这些实例在沙质沙漠中的几种不同环境中检测到了与微渗漏有关的地球化学和地球植物学变化利用机载高光谱数据和多光谱卫星时间序列对植被进行稀疏。所有的例子都分析了非洲和亚洲的真正的陆上特许区块,结果清楚地显示了通过现场测量,测井,地下知识和已知油田位置从远处记录的光谱信号之间的相关性。

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