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P~3 - International PetroPhysical Property Database

机译:P〜3 - 国际岩石物业数据库

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Petrophysical properties are key to populate local and/or regional numerical models and for interpretation of many geophysical exploration methods. Inquiries for rock property values that have been measured for a specific rock unit at a specific site might become a very time-consuming challenge given that such data are spread across diverse compilations and that the number of publications on new measurements is continuously increasing and of heterogeneous quality. The applicability of laboratory data to specific locations or reservoir units for example might be questionable if information on the sample location, petrography, stratigraphy, measuring method and conditions are too sparse or even lacking. Within the scope of the EC funded project IMAGE (Integrated Methods for Advanced Geothermal Exploration, Van Wees et al., 2015) an open-access database has been developed. This database aims at providing easily accessible, peer-reviewed information on physical rock properties relevant for geothermal exploration and reservoir characterization in one single compilation. Collected data include hydraulic, thermophysical and mechanical properties and, in addition, electrical resistivity and magnetic susceptibility. Each measured value is complemented by relevant meta-information such as the corresponding sample location, petrographic description, chronostratigraphic age and, most importantly, original citation. The original stratigraphic and petrographic descriptions are transferred to standardized catalogues following a hierarchical structure ensuring intercomparability for statistical analysis. In addition, information on the experimental setup (methods) and the measurement conditions are given for quality control. Thus, rock properties can directly be related to in-situ conditions to derive specific parameters relevant for modelling the subsurface or interpreting geophysical data. We describe the structure, content and status quo of the database and discuss its limitations and advantages in terms of applicability. The next step will be the setup of a publicly accessible web-based interface to allow its use by external users and scientists, also offering the opportunity to complement the database with additional measured rock properties. It is planned to continuously update the database and launch new releases at reasonable intervals.
机译:岩石物理学属性是填充本地和/或区域数值模型的关键,以及对许多地球物理勘探方法的解释。鉴于这种数据在不同的编译中传播,并且新测量上的出版物数量不断增加和异质的出版物的数量持续增加,鉴于特定站点的特定岩石单元测量的岩石属性值可能成为一个非常耗时的挑战。质量。例如,如果样品位置,岩体,地层,测量方法和条件过于稀疏或甚至缺乏的信息,则实验室数据对特定位置或储存器单元的适用性可能是可疑的。在EC资助的项目图像范围内(高级地热勘探的综合方法,Van Wees等,2015)已​​经开发了开放式访问数据库。该数据库旨在提供有关对地热勘探和储层特性相关的物理岩石属性的易于访问,同行评审信息,以单一编译。收集的数据包括液压,热物理和机械性能,以及电阻率和磁性敏感性。每个测量值都是由相关的元信息补充,例如相应的样本位置,岩体描述,计时器年龄,最重要的是原始引文。在分层结构后,原始地层和岩化描述被转移到标准化目录,确保统计分析的离子性能。此外,关于实验装置(方法)和测量条件的信息可用于质量控制。因此,岩石属性可以直接与原位条件相关,以导出与建模地下或解释地球物理数据建模的特定参数。我们描述了数据库的结构,内容和状态,并在适用性方面讨论其限制和优势。下一步将是可公开访问的基于Web的界面的设置,以允许外部用户和科学家的使用,也提供有机会通过额外的测量摇滚属性来补充数据库。计划连续更新数据库并以合理的间隔推出新版本。

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