中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
The rise, collapse, and compaction of Mt. Mantap from the 3 September 2017 North Korean nuclear test

文献类型:期刊论文

作者Wang, Teng1; Shi, Qibin1,2; Nikkhoo, Mehdi3; Wei, Shengji1,2; Barbot, Sylvain1,2; Dreger, Douglas4; Burgmann, Roland4; Motagh, Mahdi3,5; Chen, Qi-Fu6
刊名SCIENCE
出版日期2018-07-13
卷号361期号:6398页码:166-170
ISSN号0036-8075
DOI10.1126/science.aar7230
文献子类Article
英文摘要Surveillance of clandestine nuclear tests relies on a global seismic network, but the potential of spaceborne monitoring has been underexploited. We used satellite radar imagery to determine the complete surface displacement field of up to 3.5 meters of divergent horizontal motion with 0.5 meters of subsidence associated with North Korea's largest underground nuclear test. Combining insight from geodetic and seismological remote sensing, we found that the aftermath of the initial explosive deformation involved subsidence associated with subsurface collapse and aseismic compaction of the damaged rocks of the test site. The explosive yield from the nuclear detonation with best-fitting source parameters for 450-meter depth was 191 kilotonnes of TNT equivalent. Our results demonstrate the capability of spaceborne remote sensing to help characterize large underground nuclear tests.
WOS关键词HIGH-PRECISION LOCATION ; EXPLOSIONS ; INTERFEROMETRY ; DISPLACEMENTS ; DISLOCATION ; EARTHQUAKE ; INVERSION ; JANUARY ; VOLCANO ; YIELD
WOS研究方向Science & Technology - Other Topics
语种英语
出版者AMER ASSOC ADVANCEMENT SCIENCE
WOS记录号WOS:000438449200042
资助机构Singapore Ministry of Education under the Research Centres of Excellence initiative ; Singapore Ministry of Education under the Research Centres of Excellence initiative ; National Research Foundation (NRF) of Singapore under the NRF Fellowship scheme (National Research Fellow Award)(NRF-NRFF2013-04) ; National Research Foundation (NRF) of Singapore under the NRF Fellowship scheme (National Research Fellow Award)(NRF-NRFF2013-04) ; EOS startup fund(M4430240.B50) ; EOS startup fund(M4430240.B50) ; Ministry of Education Singapore Academic Research Fund Tier 1(RG181/16) ; Ministry of Education Singapore Academic Research Fund Tier 1(RG181/16) ; VOLCAPSE - European Research Council under the European Union's H2020 Programme/ERC consolidator grant(ERC-CoG 646858) ; VOLCAPSE - European Research Council under the European Union's H2020 Programme/ERC consolidator grant(ERC-CoG 646858) ; Air Force Research Laboratory(FA9453-16-C-0024) ; Air Force Research Laboratory(FA9453-16-C-0024) ; National Science Foundation of China(41474041) ; National Science Foundation of China(41474041) ; Singapore Ministry of Education under the Research Centres of Excellence initiative ; Singapore Ministry of Education under the Research Centres of Excellence initiative ; National Research Foundation (NRF) of Singapore under the NRF Fellowship scheme (National Research Fellow Award)(NRF-NRFF2013-04) ; National Research Foundation (NRF) of Singapore under the NRF Fellowship scheme (National Research Fellow Award)(NRF-NRFF2013-04) ; EOS startup fund(M4430240.B50) ; EOS startup fund(M4430240.B50) ; Ministry of Education Singapore Academic Research Fund Tier 1(RG181/16) ; Ministry of Education Singapore Academic Research Fund Tier 1(RG181/16) ; VOLCAPSE - European Research Council under the European Union's H2020 Programme/ERC consolidator grant(ERC-CoG 646858) ; VOLCAPSE - European Research Council under the European Union's H2020 Programme/ERC consolidator grant(ERC-CoG 646858) ; Air Force Research Laboratory(FA9453-16-C-0024) ; Air Force Research Laboratory(FA9453-16-C-0024) ; National Science Foundation of China(41474041) ; National Science Foundation of China(41474041) ; Singapore Ministry of Education under the Research Centres of Excellence initiative ; Singapore Ministry of Education under the Research Centres of Excellence initiative ; National Research Foundation (NRF) of Singapore under the NRF Fellowship scheme (National Research Fellow Award)(NRF-NRFF2013-04) ; National Research Foundation (NRF) of Singapore under the NRF Fellowship scheme (National Research Fellow Award)(NRF-NRFF2013-04) ; EOS startup fund(M4430240.B50) ; EOS startup fund(M4430240.B50) ; Ministry of Education Singapore Academic Research Fund Tier 1(RG181/16) ; Ministry of Education Singapore Academic Research Fund Tier 1(RG181/16) ; VOLCAPSE - European Research Council under the European Union's H2020 Programme/ERC consolidator grant(ERC-CoG 646858) ; VOLCAPSE - European Research Council under the European Union's H2020 Programme/ERC consolidator grant(ERC-CoG 646858) ; Air Force Research Laboratory(FA9453-16-C-0024) ; Air Force Research Laboratory(FA9453-16-C-0024) ; National Science Foundation of China(41474041) ; National Science Foundation of China(41474041) ; Singapore Ministry of Education under the Research Centres of Excellence initiative ; Singapore Ministry of Education under the Research Centres of Excellence initiative ; National Research Foundation (NRF) of Singapore under the NRF Fellowship scheme (National Research Fellow Award)(NRF-NRFF2013-04) ; National Research Foundation (NRF) of Singapore under the NRF Fellowship scheme (National Research Fellow Award)(NRF-NRFF2013-04) ; EOS startup fund(M4430240.B50) ; EOS startup fund(M4430240.B50) ; Ministry of Education Singapore Academic Research Fund Tier 1(RG181/16) ; Ministry of Education Singapore Academic Research Fund Tier 1(RG181/16) ; VOLCAPSE - European Research Council under the European Union's H2020 Programme/ERC consolidator grant(ERC-CoG 646858) ; VOLCAPSE - European Research Council under the European Union's H2020 Programme/ERC consolidator grant(ERC-CoG 646858) ; Air Force Research Laboratory(FA9453-16-C-0024) ; Air Force Research Laboratory(FA9453-16-C-0024) ; National Science Foundation of China(41474041) ; National Science Foundation of China(41474041)
源URL[http://ir.iggcas.ac.cn/handle/132A11/88150]  
专题地质与地球物理研究所_中国科学院地球与行星物理重点实验室
通讯作者Wang, Teng; Wei, Shengji; Dreger, Douglas
作者单位1.Nanyang Technol Univ, Earth Observ Singapore, Singapore, Singapore
2.Nanyang Technol Univ, Asian Sch Environm, Singapore, Singapore
3.German Res Ctr Geosci, GFZ, Potsdam, Germany
4.Univ Calif Berkeley, Dept Earth & Planetary Sci, Berkeley, CA 94720 USA
5.Leibniz Univ Hannover, Inst Photogrammetry & GeoInformat, Hannover, Germany
6.Chinese Acad Sci, Inst Geol & Geophys, Key Lab Earth & Planetary Phys, Beijing, Peoples R China
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Wang, Teng,Shi, Qibin,Nikkhoo, Mehdi,et al. The rise, collapse, and compaction of Mt. Mantap from the 3 September 2017 North Korean nuclear test[J]. SCIENCE,2018,361(6398):166-170.
APA Wang, Teng.,Shi, Qibin.,Nikkhoo, Mehdi.,Wei, Shengji.,Barbot, Sylvain.,...&Chen, Qi-Fu.(2018).The rise, collapse, and compaction of Mt. Mantap from the 3 September 2017 North Korean nuclear test.SCIENCE,361(6398),166-170.
MLA Wang, Teng,et al."The rise, collapse, and compaction of Mt. Mantap from the 3 September 2017 North Korean nuclear test".SCIENCE 361.6398(2018):166-170.

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来源:地质与地球物理研究所

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