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Determination of Reservoir Extent and Priority Drilling Zones in a Geothermal Prospect Using GIS (A Case for Paka Geothermal Project)

机译:利用GIS确定地热勘探区储层范围和优先钻探区(以Paka地热工程为例)

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Geospatial technology can aid decision makers to make the right and reliable choice in order to locate areas for geothermal exploration and exploitation. The aim of the project is to determine the reservoir extent in Paka geothermal area using geological, geochemical, geophysical and heat loss data layers within the GIS and eventually to identify promising areas for geothermal well exploration drilling. Geographical Information System (GIS) was used to determine the spatial association between geophysical, geochemical and geological evidence in order to determine production zones in a geothermal area. Surface observations in Paka geothermal prospect were used to delineate areas characterized by high permeability and hot fluid transport from the reservoir. The geoprocessing techniques in GIS provide useful tools for geo-scientists to properly demarcate reservoir extent in a geothermal resource area. Geothermal reservoir extent determination and well site selection involves the evaluation of data samples collected over a prospect area by different geo-scientific teams using varied analytical techniques. Zones of potential geothermal drill sites were defined and prioritized by assigning a weighted overlying selection query for geo-scientific data layers.
机译:地理空间技术可以帮助决策者做出正确而可靠的选择,从而找到可进行地热勘探和开发的区域。该项目的目的是利用GIS中的地质,地球化学,地球物理和热损失数据层来确定帕卡地热区的储层范围,并最终确定可用于地热井勘探钻井的地区。地理信息系统(GIS)用于确定地球物理,地球化学和地质证据之间的空间关联,以便确定地热区域中的生产区域。利用Paka地热勘探区的地表观测来描绘以储层高渗透率和热流体输送为特征的区域。 GIS中的地理处理技术为地学家提供了有用的工具,以正确划分地热资源区中的储层范围。地热储层范围的确定和井位的选择涉及由不同的地学团队使用不同的分析技术对在远景区域收集的数据样本进行评估。通过为地学数据层分配加权的覆盖选择查询,可以定义潜在的地热钻探区域,并确定其优先级。

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