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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Africa
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Afar (1)
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East Africa
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Afar Depression (2)
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Eritrea (1)
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East African Rift (1)
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Nubian Shield (1)
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Asia
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Far East
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China
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Hainan China (1)
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Yunnan China
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Tengchong (1)
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Indian Ocean
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Arabian Sea
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Gulf of Aden (1)
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Red Sea (1)
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geologic age
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Cenozoic
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Quaternary
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Holocene (1)
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Primary terms
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Africa
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Afar (1)
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East Africa
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Afar Depression (2)
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Eritrea (1)
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East African Rift (1)
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Nubian Shield (1)
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Asia
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Far East
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China
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Hainan China (1)
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Yunnan China
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Tengchong (1)
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Cenozoic
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Quaternary
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Holocene (1)
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crust (1)
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data processing (1)
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earthquakes (2)
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faults (1)
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Indian Ocean
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Arabian Sea
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Gulf of Aden (1)
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Red Sea (1)
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mantle (1)
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plate tectonics (2)
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sea-floor spreading (1)
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Perspectives on the active volcanoes of China
Abstract China has a rich record of Holocene volcanism that is relatively little known outside the country. It is encountered in large stratovolcanoes in the NE, linked to subduction of the Pacific plate (e.g. Changbaishan), in smaller volcanoes on the Tibetan margin, associated with the collision of India and Eurasia (e.g. Tengchong, Ashishan), and in more isolated centres, possibly resulting from mantle upwelling (e.g. volcanoes in Hainan island). This makes China a natural laboratory for studies of intraplate volcanism, and significant progress in understanding its nature and origins has been made over the past quarter century. Here, we introduce the first publication in English to provide a comprehensive survey of the state of knowledge and research highlights. Accordingly, we provide an overview of the dynamics, geology, geochemistry, volcanic histories and geophysical studies of 14 volcanic areas associated with the Holocene documented thus far. The special publication represents a benchmark reference on the topic but, as importantly, we hope that it will stimulate new, international collaborations aimed at deepening our understanding of the origins, history, hazards and associated risks of China's volcanoes.
Probabilistic Seismic‐Hazard Assessment for Eritrea
Local Earthquake Magnitude Scale and b ‐Value for the Danakil Region of Northern Afar
Abstract Temporary broadband seismic networks deployed from 2007 to 2011 around the Afar triple junction of the East African Rift System provide insights into seismicity patterns of the actively deforming crust around the 1.86 km 3 impounded lake system behind the Tendaho dam. The observed seismicity correlates well with the active magmatic centres around central Afar. The area around the dam site is characterized by a network of intersecting NNE- and NW-trending faults. Seismicity clusters observed in the specified time interval indicate that both fault sets are active and are potential sources of seismogenic hazards. The dam neighbourhood is naturally active and it is a challenge to associate the observed seismic activity to either a change in magmato-tectonic conditions or attribute it to the influence of reservoir load. It is evident that the dam region experiences high levels of seismic and volcano-tectonic unrest, regardless of the origin of the activity. The spatial overlap of narrow zones of crustal seismicity and upper mantle low velocity zones observed in S-wave tomography models suggests that melt production zones guide the distribution of strain during continental rupture. Given its volcanically and seismically active setting, the Tendaho dam site and the surrounding region require continuous monitoring for the safety of downstream populations and development infrastructures in the Afar National Regional State of Ethiopia.