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A case history: 3-D gravity modeling using hexahedral element in Kinigi geothermal field, Rwanda

机译:案例历史:3-D使用六面膜地热场,卢旺达的预重力建模

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It is important for geothermal exploration to know regional subsurface structures. The gravity survey is often used to narrow down the promising area at the early stage of geothermal exploration. The gravity survey was carried out to estimate subsurface density structure in the Kinigi geothermal field, Rwanda, in September 2015. In order to interpret the gravity anomaly distribution, 3-D gravity modeling was done by using the new program based on Gauss-Legendre integration using hexahedral elements. As the result, the computed gravity anomalies showed high gravity anomalies in northwest, the northeast, and east-southeast of the studied field and low anomalies in the southwest side of the studied field as Bouguer anomalies. The area was characterized by normal contacts with main boundary trending NW-SE direction. This boundary was estimated as main fault in Kinigi geothermal field, Rwanda. The detected fault could be a better place for installing geothermal wells for future geothermal development in the region.
机译:地热勘探是了解区域地下结构很重要。重力调查通常用于在地热勘探的早期阶段缩小有前景的区域。在2015年9月,进行了重力调查,以估算Kinigi地热场中的地下密度结构。为了解释重力异常分布,通过使用基于高斯 - Legendre集成的新计划来完成3-D重力建模使用六面对面的元素。结果,计算的重力异常在学习领域的西北部,东北部和东南部的高重力异常表现出研究的田间和东南部的低异常作为Bouguer异常。该地区的特征在于与主边界趋势的正常接触趋际方向。该边界被估计是Kinigi地热场,卢旺达的主要故障。检测到的故障可能是在该地区安装地质井安装地热井的更好的地方。

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