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Integrated geophysical exploration in onshore frontier basins

机译:陆上边境盆地的综合地球物理勘探

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摘要

Faced with the challenge of rapidly screening a huge expanse of frontier exploration acreage, often characterized by sparse vintage data, it is our experience that a combination of appropriate air- and ground-based geophysical techniques contributes positively to the exploration value chain. Airborne gravity gradiometry in conjunction with conventional gravity and magnetic data, as well as geological knowledge, add significant value to the screening process. This combination can subsequently assist in optimizing the location of the more time-consuming and expensive seismic programme. In addition, analysis and inversion of passive seismic data have also proven useful in providing depth to basement estimates, and results derived from all the techniques investigated have been consistent within several study areas. Following initial tests, where the data were independently analysed and cross-checked for consistency (including comparisons with active source seismic data and well data, when available), the company now routinely adopts the integration of these techniques in our frontier exploration acreage to support sedimentary basin delineation and mapping. This allows the optimal positioning and focussing of the higher spend and higher footprint programmes, such as active reflection seismic.
机译:面对快速筛查通常以稀疏年份数据为特征的广阔边界勘探面积的挑战,我们的经验是,适当的空基和地面地球物理技术相结合对勘探价值链有积极贡献。机载重力梯度测量技术结合常规重力和磁数据以及地质知识,为筛选过程增加了重要价值。这种组合随后可以帮助优化耗时和昂贵的地震程序的位置。此外,被动地震数据的分析和反演也被证明可以为地下估算提供深度,并且从所有研究的技术得出的结果在几个研究领域内都是一致的。经过初步测试,对数据进行了独立分析并进行了一致性检查(包括与活动源地震数据和井数据进行比较,如果有的话),该公司现在在我们的前沿勘探领域中常规采用这些技术的集成来支持沉积盆地轮廓和制图。这样就可以更好地定位和聚焦较高支出和较高覆盖范围的程序,例如主动反射地震。

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