Seismic Methods for Geothermal Reservoir Characterization and Monitoring Using Fiber Optic Distributed Acoustic and Temperature Sensor

A. Chalari, M. Mondanos, T. Coleman, M. Farhadiroushan, A. Stork
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引用次数: 2

Abstract

Summary Enhanced Geothermal Systems (EGS) offer unique monitoring and characterization challenges. The harsh, high temperature downhole environment and heterogeneous nature of discrete hydraulic features usually governed by discontinuous fractures and faults requires robust measurement technology with advanced resolution capability. Borehole DAS installations are often associated with VSP surveys. However, tomographic seismic, earthquake seismology, and microseismic applications have also been demonstrated at a geothermal field. The spatio-temporal resolution achieved with DTS allows for characterisation of hydrothermal processes as well as estimation of thermal diffusivity with depth. Here we present the use of fibre optic distributed temperature and acoustic systems at both hydrothermal and EGS sites as part of the subsurface geothermal characterisation.
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利用光纤分布式声温传感器进行地热储层表征和监测的地震方法
增强型地热系统(EGS)提供了独特的监测和表征挑战。恶劣的高温井下环境和离散水力特征的不均匀性通常由不连续的裂缝和断层控制,需要具有先进分辨率的强大测量技术。井眼DAS安装通常与VSP测量相关联。然而,层析地震、地震地震学和微地震的应用也已经在地热田得到了证明。DTS获得的时空分辨率允许热液过程的表征以及热扩散率随深度的估计。在这里,我们介绍了在热液和EGS站点使用光纤分布式温度和声学系统作为地下地热特征的一部分。
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Seismic Methods for Geothermal Reservoir Characterization and Monitoring Using Fiber Optic Distributed Acoustic and Temperature Sensor Seismic Approach Characterizing Geothermal Reservoirs Using DAS and FWI Drilling Induced Borehole Breakouts - New Insights From LWD Data Analysis Utilization of Well Logs for Geothermal Prospect Evaluation on Reservoir and Regional Scale Surface-Borehole Electromagnetic Method - A Review on the Technology Development and Potential for Geothermal Applications
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