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Integrated 3D Geophysical Inversion and Geological Modelling for Improved Geothermal Exploration and Drillhole Targeting

机译:综合3D地球物理反演及地质地质勘探和钻孔靶向的地质模型

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Choosing where to drill a geothermal well is perhaps the most important decision made in a geothermal exploration program. In this paper, we describe an improved exploration methodology that makes more effective use of existing exploration datasets, integrates all data in three dimensions, constrains data against one another, and employs a quantitative and comprehensive approach to selecting drill targets. The methodology has been adapted from the mining industry where it has found great success. An important component of the proposed approach involves 3D inversion of multiple geophysical datasets, in both unconstrained and constrained forms, as a way of delineating rock domains in the subsurface. The method culminates in the construction of a 3D Common Earth Model which is consistent with all datasets. Such a model provides the platform for further analysis, interpretation, hypothesis-testing, and ultimately, informed selection of drill targets. A quantitative drill targeting approach that utilizes specific exploration criteria is also presented. We argue that implementation of this approach in the geothermal sector will improve exploration programs and result in increased drilling success.
机译:选择往哪钻地热井可能是在地热勘探计划作出的最重要的决定。在本文中,我们描述了一种改进的探索方法,使更有效地利用现有的勘探数据集,集成了所有的数据在三个维度,约束数据对彼此,采用定量和全面的方法来选择钻探目标。该方法已被改编自采矿业的地方发现了巨大的成功。所提出的方法的一个重要组成部分涉及到多个地球物理数据集的3D反转,在两个无约束和约束的形式,如在地下岩石划定域的方式。该方法的高潮在3D通用地球模型的结构,该结构与所有数据集相一致。这种模型提供了进一步的分析,解释,假设检验,并钻探目标最终通知选择平台。利用特定的勘探标准的定量目标钻方法也提出了。我们认为在地热部门将提高勘探方案和导致更多的钻探成功这种做法,落实。

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