Realtime analysis and well planning using wireline logs in a hydrogeological context

B. Birt, O. Filiptsova, S. Ryan, Tim Hopper
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引用次数: 1

Abstract

Summary During the drilling process, numerous decisions must be made, often with limited information. In a known area prior knowledge often guides these decisions. In a recent drilling program in the Northern Perth Basin, as part of a research project to monitor the use of aquifers, petrophysical logs were used to help inform some critical decisions. Further analysis of the data collected from the borehole was going to be used to monitor quality, extent and connectivity of the numerous aquifers that make up the Northern Perth Basin. As an aquifer monitoring program, it is critical to ensure that the bore is accessing the aquifer in question. Therefore, accurate knowledge of depth and quality of formation is key. This paper shows how to use a simple set of petrophysical logs including natural gamma, resistivity and borehole magnetic resonance logs can be used to make informed decisions. For example, using a composite log, decisions were able to be made on screen placement prior to running, and also helped decide if extra bores on the same drilling pad were required. Finally, we were able to determine the salinity of ground water from wireline logs. The ability to make these decisions with accurate information not only ensures successful well completion but also maximises resource use.
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在水文地质背景下,利用电缆测井进行实时分析和井眼规划
在钻井过程中,必须在有限的信息下做出许多决定。在一个已知的领域,先验知识常常指导这些决策。最近,在北珀斯盆地的一个钻井项目中,作为监测含水层使用情况的研究项目的一部分,岩石物理测井被用来帮助做出一些关键决策。从钻孔中收集的数据的进一步分析将用于监测组成北珀斯盆地的众多含水层的质量、范围和连通性。作为一项含水层监测项目,确保钻孔能够进入相关含水层是至关重要的。因此,准确了解地层深度和质量是关键。本文介绍了如何使用一组简单的岩石物理测井,包括自然伽马、电阻率和井眼磁共振测井,来做出明智的决策。例如,使用复合测井,可以在下入之前决定筛管的位置,还可以帮助决定是否需要在同一钻井垫上增加额外的井眼。最后,我们能够通过电缆测井确定地下水的盐度。根据准确的信息做出决策的能力不仅可以确保成功完井,还可以最大限度地利用资源。
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