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首页> 外文期刊>Exploration Geophysics >Applying FALCON~® gravity gradiometry to hydrocarbon exploration in the Gippsland Basin, Victoria
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Applying FALCON~® gravity gradiometry to hydrocarbon exploration in the Gippsland Basin, Victoria

机译:将FALCON〜®重力梯度仪应用于维多利亚州吉普斯兰盆地的油气勘探

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摘要

The Bass Strait FALCON airborne gravity gradiometer (AGG) survey was flown over an area of the Gippsland Basin in Bass Strait in July 2002. The survey, centred on the gas-producing Marlin and Snapper fields, coincided with a contemporary, detailed marine gravity survey. These marine gravity data, as well as pre-existing data from satellite gravity and sparse marine gravity surveys, were used in comparisons with the FALCON data. The vertical gravity gradient data outlined a major Eocene channel. Interpretation, including modelling of representative seismic lines, revealed the particular usefulness of these data for mapping shallow faults. Conventional vertical gravity from the FALCON survey was better at the longer wavelength features, typically the major tectonic elements such as basin bounding faults, and relative sediment thickness. Comparisons with the marine and satellite gravity data showed that the FALCON gravity reproduced all the information available in the other surveys at wavelengths up to the survey size. At shorter wavelengths, the FALCON data had higher sensitivity than all other datasets, including the detailed marine gravity. Incorporation of longer wavelengths from the satellite or other gravity into the FALCON gravity proved successful in improving the longer wavelength information and regional context. As a result of this study, the standard FALCON processing has been improved to allow such incorporation on all surveys where separately acquired sparse gravity data are available.
机译:巴斯海峡FALCON机载重力梯度仪(AGG)于2002年7月在巴斯海峡Gippsland盆地的某个区域飞行。该调查以产气马林油田和鲷鱼油田为中心,与当代详细的海洋重力调查相吻合。 。这些海洋重力数据,以及来自卫星重力和稀疏海洋重力调查的现有数据,都与FALCON数据进行了比较。垂直重力梯度数据概述了一个主要的始新世通道。包括代表性地震线建模在内的解释揭示了这些数据对于绘制浅层断层的特殊用途。 FALCON勘测的常规垂直重力在较长的波长特征上较好,通常是主要的构造要素,如盆地边界断层和相对沉积物厚度。与海洋和卫星重力数据的比较表明,FALCON重力以不超过调查规模的波长再现了其他调查中可获得的所有信息。在较短的波长下,FALCON数据的灵敏度高于所有其他数据集,包括详细的海洋重力。事实证明,将来自卫星或其他引力的较长波长合并到FALCON引力中可以成功地改善较长的波长信息和区域环境。这项研究的结果是,改进了标准FALCON的处理方法,使其可以在所有可单独获得稀疏重力数据的勘测中纳入。

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