globalchange  > 过去全球变化的重建
DOI: 10.1016/j.epsl.2016.07.052
论文题名:
Experimental estimates of the energy budget of hydrothermal eruptions; application to 2012 Upper Te Maari eruption, New Zealand
作者: Cristian Montanaroa; ; ; Bettina Scheua; Shane J. Croninb; c; Eric C.P. Breardc; Gert Lubec; Donald B. Dingwella
刊名: Earth and Planetary Science Letters
ISSN: 0012-864X
出版年: 2016
卷: Volume 452, 页码:Pages 281-294
语种: 英语
英文关键词: Te Maari ; hydrothermal eruption ; experimental ; fragmentation ; explosive energy ; ballistics
英文摘要: Sudden hydrothermal eruptions occur in many volcanic settings and may include high-energy explosive phases. Ballistics launched by such events, together with ash plumes and pyroclastic density currents, generate deadly proximal hazards. The violence of hydrothermal eruptions (or explosive power) depends on the energy available within the driving-fluids (gas or liquid), which also influences the explosive mechanisms, volumes, durations, and products of these eruptions. Experimental studies in addition to analytical modeling were used here to elucidate the fragmentation mechanism and aspects of energy balance within hydrothermal eruptions. We present results from a detailed study of recent event that occurred on the 6th of August 2012 at Upper Te Maari within the Tongariro volcanic complex (New Zealand). The eruption was triggered by a landslide from this area, which set off a rapid stepwise decompression of the hydrothermal system. Explosive blasts were directed both westward and eastward of the collapsed area, with a vertical ash plume sourced from an adjacent existing crater. All explosions ejected blocks on ballistic trajectories, hundreds of which impacted New Zealand's most popular hiking trail and a mountain lodge, 1.4 km from the explosion locus. We have employed rocks representative of the eruption source area to perform rapid decompression experiments under controlled laboratory conditions that mimic hydrothermal explosions under controlled laboratory conditions. An experimental apparatus for 34 by 70 mm cylindrical samples was built to reduce the influence of large lithic enclaves (up to 30 mm in diameter) within the rock. The experiments were conducted in a temperature range of 250 °C–300 °C and applied pressure between 4 MPa and 6.5 MPa, which span the range of expected conditions below the Te Maari crater. Within this range we tested rapid decompression of pre-saturated samples from both liquid-dominated conditions and the vapor-dominated field. Further, we tested dry samples at the same pressure and temperature conditions. Results showed that host rock lithology and state of the interstitial fluid was a major influence on the fragmentation and ejection processes, as well as the energy partitioning. Clasts were ejected with velocities of up to 160 m/s as recorded by high-speed camera. In addition to rare large clasts (analogous to ballistics), a large amount of fine and very fine (<63 μm) ash was produced in all experiments. The efficiency of transformation of the total explosive energy into fragmentation energy was estimated between 10 to 15%, depending on the host rock lithology, while less than 0.1% of this was converted into kinetic energy. Our results suggest that liquid-to-vapor (flashing) expansion provides an order of magnitude higher energy release than steam expansion, which best explains the dynamics of the westward (and most energetic) directed blast at Te Maari. Considering the steam flashing as the primary energy source, the experiments suggested that a minimum explosive energy of 7×10107×1010 to 2×1012J2×1012J was involved in the Te Maari blast.Experimental studies under controlled conditions, compared closely to a field example are thus highly useful in providing new insights into the energy release and hazards associated with eruptions in hydrothermal areas.
Citation statistics:
资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/11878
Appears in Collections:过去全球变化的重建
影响、适应和脆弱性

Files in This Item:
File Name/ File Size Content Type Version Access License
1-s2.0-S0012821X16304083-main.pdf(5247KB)期刊论文作者接受稿开放获取View Download

Recommended Citation:
Cristian Montanaroa,,,et al. Experimental estimates of the energy budget of hydrothermal eruptions; application to 2012 Upper Te Maari eruption, New Zealand[J]. Earth and Planetary Science Letters,2016-01-01,Volume 452
Service
Recommend this item
Sava as my favorate item
Show this item's statistics
Export Endnote File
Google Scholar
Similar articles in Google Scholar
[Cristian Montanaroa]'s Articles
[]'s Articles
[]'s Articles
百度学术
Similar articles in Baidu Scholar
[Cristian Montanaroa]'s Articles
[]'s Articles
[]'s Articles
CSDL cross search
Similar articles in CSDL Cross Search
[Cristian Montanaroa]‘s Articles
[]‘s Articles
[]‘s Articles
Related Copyright Policies
Null
收藏/分享
文件名: 1-s2.0-S0012821X16304083-main.pdf
格式: Adobe PDF
此文件暂不支持浏览
所有评论 (0)
暂无评论
 

Items in IR are protected by copyright, with all rights reserved, unless otherwise indicated.