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Protocol for induced microseismicity in the first enhanced geothermal systems project in Pohang, Korea

机译:韩国浦项第一个增强型地热系统项目中的诱发微震协议

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The first enhanced geothermal system (EGS) project in South Korea was initiated in Pohang in 2010, and the induced microseismicity has been regarded as a key component. This study presents a regional case study of geothermal energy development in South Korea focusing on a comprehensive protocol that addresses induced microseismicity. The protocol essentially follows the seven steps suggested by the U.S. Department of Energy with necessary site-specific adjustments and improvements. The site selection procedure, outreach program, establishment of a local seismic network, and the methodology of establishing a traffic light system are introduced along with an analysis of induced microseismicity from the first hydraulic stimulation campaign. The equation for estimating vibration due to blasting was converted to an equation that relates peak ground velocity (PGV) to magnitude by using conversion equations between the amount of explosives, the magnitude of the earthquake and the radiated energy. A site-specific traffic light system is suggested based on the equation that relates PGV to magnitude, the site-specific parameters of which were determined by natural earthquakes that occurred within 50 km of the Pohang EGS site. The traffic light system was applied to the first hydraulic stimulation that occurred in January and February of 2016. The obtained induced seismic data were roughly in agreement with the suggested empirical equation.
机译:韩国的第一个增强型地热系统(EGS)项目于2010年在浦项市启动,其诱发的微震被认为是关键要素。这项研究提出了韩国地热能开发的区域案例研究,重点是解决诱导微震的综合协议。该协议实质上遵循了美国能源部建议的七个步骤,并进行了必要的针对特定地点的调整和改进。介绍了选址程序,外展计划,本地地震网络的建立以及交通信号灯系统的建立方法,以及对第一次水力刺激活动引起的微地震的分析。通过使用炸药量,地震震级和辐射能之间的转换方程,将估算爆破振动的方程转换为将峰值地面速度(PGV)与震级相关的方程。根据将PGV与量级相关的方程式,建议使用特定地点的交通信号灯系统,该地点的特定参数由浦项EGS地点50公里内发生的自然地震确定。将交通信号灯系统应用于2016年1月和2月的第一次水力刺激。获得的感应地震数据与建议的经验公式大致吻合。

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