环境科学
泄漏(经济)
诱发地震
被动地震
成本效益
营业成本
计算机科学
持续监测
地下水
经济评价
航程(航空)
水文地质学
选址
含水层
钥匙(锁)
作者
Neala Creasy,Yao Huang,Jake Parsons,Axel Perwira Indro,Mohamed Lamine Malki,Shaowen Mao,Mohamed Mehana
标识
DOI:10.1016/j.ijhydene.2026.153524
摘要
Underground hydrogen storage (UHS) plays a key role in the energy landscape. However, like other subsurface engineering technologies, UHS may cause leakage into the groundwater or atmosphere and possibly induce local seismicity. To reduce these risks, seismic monitoring could be a viable technique to track the UHS plume, detect leakages, and locate induced seismicity events. Seismic monitoring has been proposed to safely monitor UHS, but research in this area is still new and requires field studies. Lab and theoretical studies have demonstrated the validity of seismic monitoring for UHS. Therefore, it is imperative to analyze the economic feasibility of seismic monitoring for UHS. Hence, we develop a cost model and open-source Python code for seismic monitoring that considers types of seismometers, comprehensive operational scenarios, detection thresholds, and long-term leakage monitoring. A case study is further provided to validate the cost model on reservoir simulations of UHS. We find that the levelized cost for a 10-year operating UHS site will range on the order of ∼0.003 $/kg. The methods developed in this study could also be applied to the monitoring of groundwater, gas, and/or wastewater injection. • We construct an economic cost model for evaluating seismic monitoring costs for UHS. • We propose a passive seismic monitoring strategy based on noise thresholds. • We demonstrate the cost model on 3D reservoir simulations of UHS and leakage scenarios.
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