Eruption style transition during the 2017-2018 eruptive activity at the Shinmoedake volcano, Kirishima, Japan: surface phenomena and eruptive products

被引:8
|
作者
Maeno, Fukashi [1 ]
Shohata, Sayaka [2 ]
Suzuki, Yuki [3 ]
Hokanishi, Natsumi [1 ]
Yasuda, Atsushi [1 ]
Ikenaga, Yuya [4 ]
Kaneko, Takayuki [1 ]
Nakada, Setsuya [5 ]
机构
[1] Univ Tokyo, Earthquake Res Inst, 1-1-1 Yayoi,Bunkyo Ku, Tokyo 1130032, Japan
[2] Tera Technol Inc, Ikebukuro East Bldg,Higashi Ikebukuro 3-4-3,Toshim, Tokyo 1700013, Japan
[3] Waseda Univ, 1-6-1 Nishi-Waseda,Shinjuku Ku, Tokyo 1698050, Japan
[4] Univ Tokyo, Dept Earth & Planetary Sci, 7-3-1 Hongo,Bunkyo Ku, Tokyo 1130033, Japan
[5] Natl Res Inst Earth Sci & Disaster Resilience, 3-1 Tennodai, Tsukuba 3050006, Japan
来源
EARTH PLANETS AND SPACE | 2023年 / 75卷 / 01期
关键词
Lava dome; Phreatic; Phreatomagmatic; Effusive; Explosive; Subplinian; Number density; Shinmoedake; EXPLOSIVE ACTIVITY; CONDUIT PROCESSES; CRYSTALLIZATION; DAKE; SIZE; CHRONOLOGY; INSIGHTS; PHASE;
D O I
10.1186/s40623-023-01834-3
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Recent eruptions of the Shinmoedake volcano, Japan, have provided a valuable opportunity to investigate the transition between explosive and effusive eruptions. In October 2017, phreatic/phreatomagmatic explosions occurred. They were followed in March 2018 by a phase of hybrid activity with simultaneous explosions and lava flows and then a transition to intermittent, Vulcanian-style explosions. Evolution of surface phenomena, temporal variations of whole-rock chemical compositions from representative eruptive material samples, and rock microtextural properties, such as the crystallinity and crystal size distribution of juvenile products, are analyzed to characterize the eruption style transition, the conduit location, and the shallow magma conditions of the volcanic edifice. The 2017-2018 eruptive event is also compared with the preceding 2011 explosive-effusive eruption. The chemical and textural properties of the 2018 products (two types of pumice, ballistically ejected lava blocks, and massive lava) are representative of distinct cooling and magma ascent processes. The initial pumice, erupted during lava dome formation, has a groundmass crystallinity of up to 45% and the highest plagioclase number density of all products (1.9 x 10(6)/mm(3)). Conversely, pumice that erupted later has the lowest plagioclase number density (1.2 x 10(5)/mm(3)) and the highest nucleation density (23/mm(4) in natural logarithm). This 2018 pumice is similar to the 2011 subplinian pumice. Therefore, it was likely produced by undegassed magma with a high discharge rate. Ballistics and massive lava in 2018 are comparable to the 2011 Vulcanian ballistics. Conversely, the high plagioclase number density pumice that occurred in 2018 was not observed during the 2011 eruption. Thus, such pumice might be specific to hybrid eruptions defined by small-scale explosions and lava dome formation with low magma discharge. The observed transitions and temporal variations of the activities and eruption style during the 2017-2018 Shinmoedake eruptions were primarily influenced by the ascent rate of andesitic magma and the geological structure beneath the summit crater.
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