Managing Induced Seismicity Risks From Enhanced Geothermal Systems: A Good Practice Guideline

IF 25.2 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
Wen Zhou, Federica Lanza, Iason Grigoratos, Ryan Schultz, Julia Cousse, Evelina Trutnevyte, Annemarie Muntendam-Bos, Stefan Wiemer
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Abstract

Geothermal energy is a green source of power that could play an important role in climate-conscious energy portfolios; enhanced geothermal systems (EGS) have the potential to scale up exploitation of thermal resources. During hydraulic fracturing, fluids injected under high-pressure cause the rock mass to fail, stimulating fractures that improve fluid connectivity. However, this increase of pore fluid pressure can also reactivate pre-existing fault systems, potentially inducing earthquakes of significant size. Induced earthquakes are a significant concern for EGS operations. In some cases, ground shaking nuisance, building damages, or injuries have spurred the early termination of projects (e.g., Basel, Pohang). On the other hand, EGS operations at Soultz-sous-Forêts (France), Helsinki (Finland), Blue Mountain (Nevada, USA), and Utah FORGE (USA) have adequately managed induced earthquake risks. The success of an EGS operation depends on economical reservoir enhancements, while maintaining acceptable seismic risk levels. This requires state-of-the-art seismic risk management. This article reviews domains of seismology, earthquake engineering, risk management, and communication. We then synthesize “good practice” recommendations for evaluating, mitigating, and communicating the risk of induced seismicity. We advocate for a modular approach. Recommendations are provided for key technical aspects including (a) a seismic risk management framework, (b) seismic risk pre-screening, (c) comprehensive seismic hazard and risk evaluation, (d) traffic light protocol designs, (e) seismic monitoring implementation, and (f) step-by-step communication plans. Our recommendations adhere to regulatory best practices, to ensure their general applicability. Our guidelines provide a template for effective earthquake risk management and future research directions.

Abstract Image

管理强化地热系统的诱发地震风险:良好做法指南
地热能是一种绿色能源,可在注重气候的能源组合中发挥重要作用;增强型地热系统(EGS)具有扩大热资源开采规模的潜力。在水力压裂过程中,高压注入的流体会导致岩体破裂,从而刺激裂缝,提高流体的连通性。然而,孔隙流体压力的增加也会重新激活原有的断层系统,从而可能诱发规模巨大的地震。诱发地震是 EGS 业务的一个重大问题。在某些情况下,地震动扰民、建筑物损坏或人员伤亡导致项目提前终止(如巴塞尔、浦项)。另一方面,Soultz-sous-Forêts(法国)、赫尔辛基(芬兰)、蓝山(美国内华达州)和犹他州 FORGE(美国)的 EGS 项目已充分控制了诱发地震的风险。EGS 项目的成功取决于在保持可接受的地震风险水平的同时,经济地提高储层的储量。这需要最先进的地震风险管理。本文回顾了地震学、地震工程、风险管理和交流等领域。然后,我们总结了评估、减轻和交流诱发地震风险的 "良好实践 "建议。我们主张采用模块化方法。关键技术方面的建议包括:(a) 地震风险管理框架,(b) 地震风险预筛查,(c) 综合地震危害和风险评估,(d) 交通灯协议设计,(e) 地震监测实施,以及 (f) 分步沟通计划。我们的建议遵循监管方面的最佳实践,以确保其普遍适用性。我们的指导方针为有效的地震风险管理和未来的研究方向提供了模板。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Reviews of Geophysics
Reviews of Geophysics 地学-地球化学与地球物理
CiteScore
50.30
自引率
0.80%
发文量
28
审稿时长
12 months
期刊介绍: Geophysics Reviews (ROG) offers comprehensive overviews and syntheses of current research across various domains of the Earth and space sciences. Our goal is to present accessible and engaging reviews that cater to the diverse AGU community. While authorship is typically by invitation, we warmly encourage readers and potential authors to share their suggestions with our editors.
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