dot
Detailansicht
Katalogkarte GBA
Katalogkarte ISBD
Suche präzisieren
Drucken
Download RIS
Hier klicken, um den Treffer aus der Auswahl zu entfernen
Titel Pilot CCS project in Indonesia "Gundih CCS project": Geological and geophysical surveys for site selection and monitoring
VerfasserIn Takeshi Tsuji, Toshifumi Matsuoka, Toru Takahashi, Keigo Kitamura, Kyosuke Onishi, Yasuhiro Yamada, Mohammad Rachmat Sule, Wawan Gunawan A. Kadir, Djedi S. Widarto, Rio I. Sebayang, Agung Prasetyo, Awali Priyono, Eko Widianto, Benyamin Sapiie
Konferenz EGU General Assembly 2013
Medientyp Artikel
Sprache Englisch
Digitales Dokument PDF
Erschienen In: GRA - Volume 15 (2013)
Datensatznummer 250084610
 
Zusammenfassung
A pilot CCS project in Indonesia will be implemented in Gundih area, Central Java Province. The Gundih area is a gas field, and gas is ready to be produced by Pertamina EP. The CO2 content within the produced gas is more than 20% in the Gundih field, so that CO2 injection near the gas production well could be effective way to avoid abundant CO2 emission. Before implementing CO2 injection, the reservoir for CO2 injection must be characterized carefully by conducting subsurface characterization and evaluation, in order to make sure that the reservoir is suitable for CCS. Here we report preliminary results of site surveys for the determination of CO2 injection site in the Gundih area. Subsurface structures imaged on seismic reflection profiles indicate that the Ngrayong formation is one of the candidates for CO2 injection. The lithology of the Ngrayong formation is sandstone, and the depth of the formation is ~1 km in the Gundih area. Since we could not find large-scale structural closure (i.e., anticline) for the Ngrayong formation, we need to consider residual trapping. To reveal hydrological properties (e.g., permeability) of the Ngrayong formation, we obtained rock samples from the outcrop of the Ngrayong formation. Using the laboratory-derived hydrological properties and subsurface structures extracted from seismic data (e.g., geometry of the Ngrayong formation), we will apply reservoir simulation in order to determine CO2 injection site. To design the geophysical monitoring survey (e.g., receiver and source position in time-lapse seismic survey), furthermore, we conduct simulation study for the constructed geological model and estimate elastic and electric responses associated with CO2 injection.