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Smart Interpretation - automatic geological interpretations based on supervised statistical models

机译:智能解释-基于监督统计模型的自动地质解释

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A method that infers a statistical model, which describes a relation between the knowledge of a geologist (quantified by geological interpretations) and the available information (such as geophysical data, well log data, etc.) that a geologist uses when he/she interprets is proposed and tested. The statistical model is then used to perform automatic geological interpretations wherever the same kinds of information, as used for the initial interpretations, are available. This methodology is named Smart Interpretation (SI). In this study, we look at two different approaches to infer such a model, and we demonstrate the applicability of the model to predict the depth to a low resistivity subsurface layer, based on interpretations from a geological expert, using a 19-layered resistivity model obtained from inversion of airborne electromagnetic (AEM) data. This study shows that SI is capable of making predictions with great accuracy. The method is fast and is able to handle large amounts of data of different origin, which suggest that the method may become a very useful approach to assist in geological modeling based on increasingly large amounts of data of different nature.
机译:一种推断统计模型的方法,该模型描述了地质学家的知识(通过地质解释量化)与地质学家在解释时使用的可用信息(例如地球物理数据,测井数据等)之间的关系被提议和测试。然后,只要可获得与初始解释所用信息相同的信息,就可以使用统计模型执行自动地质解释。这种方法称为智能解释(SI)。在这项研究中,我们研究了两种推论此类模型的方法,并且基于地质专家的解释,使用19层电阻率模型,我们演示了该模型在预测低电阻率地下层深度方面的适用性。从机载电磁(AEM)数据反演获得。这项研究表明,SI能够非常准确地做出预测。该方法快速并且能够处理大量不同来源的数据,这表明该方法可能成为基于越来越多的不同性质的数据来辅助地质建模的非常有用的方法。

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