Feasibility study to optimize a near-surface sensor network design for improving detectability of CO2 leakage at a geologic storage site

  • Jeong, Jina
  • Park, Eungyu
  • Han, Weon Shik
  • Min, Kue-Young
  • Yun, Seong-Taek
Citations

WEB OF SCIENCE

10
Citations

SCOPUS

11

초록

We explored the feasibility of an improved design of a CO2 leakage monitoring network at a geologic storage site. To effectively represent CO2 pathways, a rule-based percolation model was adopted rather than the rigorous multiphase flow model based on Darcy's equation. Five different monitoring network designs were compared using a few scenarios and multiple correlated random field realizations. The ensemble results showed that given the detection uncertainty across the entire sensor network, regular spacing deployment of sensors is the most effective method when a sufficient number of sensors is available. The results also showed that an aggressive monitoring design based on information of the spatial permeability distribution near the surface can be a viable method when a limited number of sensors is employed. However, such an aggressive design can lead to elevated uncertainty in leakage detectability.

키워드

CO2 leakageMonitoring network designRule-based percolation modelCO2 storage siteMonte Carlo simulationCARBON SEQUESTRATIONDISSOLUTION KINETICSMULTIPHASE FLOWPREDICTIONPLUME
제목
Feasibility study to optimize a near-surface sensor network design for improving detectability of CO2 leakage at a geologic storage site
저자
Jeong, JinaPark, EungyuHan, Weon ShikMin, Kue-YoungYun, Seong-Taek
DOI
10.1016/j.jhydrol.2019.02.042
발행일
2019-05
유형
Article
저널명
Journal of Hydrology
572
페이지
32 ~ 39