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해양전자탐사를 이용한 천해 심부대염수층에서의 이산화탄소 지중격리 모니터링

Title
해양전자탐사를 이용한 천해 심부대염수층에서의 이산화탄소 지중격리 모니터링
Other Titles
CO2 sequestration monitoring using the mCSEM method at a deep brine aquifer in a shallow sea
Author
강서기
Alternative Author(s)
Seogi Kang
Advisor(s)
변중무
Issue Date
2012-02
Publisher
한양대학교
Degree
Master
Abstract
Reservoir production monitoring using marine controlled-source electromagnetic (mCSEM) has been studied recently because it is sensitive to resistivity changes resulting from variations in hydrocarbon saturation. However, mCSEM for CO2 sequestration monitoring has scarcely been investigated, although the mCSEM method is advantageous for monitoring CO2 injection and migration. In order to investigate the feasibility of mCSEM monitoring for CO2 sequestration, we conducted numerical experiments of representative CO2 injection models at a deep brine aquifer in a shallow sea. By using a modified secondary field method, we effectively address the airwave problem occurring when mCSEM is applied to a target beneath a shallow sea. We demonstrate the modified secondary field method can restore high frequency band data, which is beneficial for the detection of the movement of injected CO2. Furthermore, using a modified scattered field approach for 2.5D forward modeling, we achieve very high accuracy, which is essential for the simulation of electromagnetic fields generated by CO2 injection in a deep brine aquifer. The mCSEM response, which is enhanced by the modified secondary field method, shows small but measurable changes in a given pseudo-realistic CO2 sequestration scenario. The mCSEM responses differ for horizontal and vertical injections. These results include the feasibility of applying mCSEM to CO2 sequestration monitoring. Optimum operating frequency bands and source-receiver geometries for a brine aquifer model beneath a shallow sea are proposed based on the results of the numerical experiments. Moreover, we suggest the necessity of various types of data acquisition for the monitoring of a CO2 plume based on analyses of multiple components of electric and magnetic fields. Finally, we recommended a constraint inversion approach based on the sensitivity analysis of the mCSEM in order to extract the distribution of CO2 saturation in the brine aquifer.
URI
https://repository.hanyang.ac.kr/handle/20.500.11754/136911http://hanyang.dcollection.net/common/orgView/200000419580
Appears in Collections:
GRADUATE SCHOOL[S](대학원) > EARTH RESOURCES AND ENVIRONMENTAL ENGINEERING(자원환경공학과) > Theses (Master)
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