Complex staged emplacement of a basaltic lava: The example of the July 1974 flow of Kīlauea.

IF 3.6 2区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Bulletin of Volcanology Pub Date : 2025-01-01 Epub Date: 2025-03-31 DOI:10.1007/s00445-025-01817-0
S Biass, B F Houghton, E W Llewellin, K C Curran, T Thordarson, T R Orr, C E Parcheta, P Mouginis-Mark
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引用次数: 0

Abstract

Basaltic lava flows can be highly destructive. Forecasting the future path and/or behavior of an active lava flow is challenging because topography is often poorly constrained and lava has a complex rheology and emplacement history. Preserved lavas are an important source of information which, combined with observations of active flows, underpins conceptual models of lava flow emplacement. However, the value of preserved lavas is limited because pre-eruptive topography and, thus, syn-eruptive lava flow geometry are usually not known. Here, we use tree-mold data to constrain pre-eruptive topography and syn-eruptive lava flow geometry of the July 1974 flow of Kīlauea (USA). Tree molds, which are formed after advancing lava encloses standing trees, preserve the lava inundation height and the final preserved thickness of lava. We used data from 282 tree molds to reconstruct the temporal and spatial evolution of the ~ 2.1 km-long July 1974 flow. The tree mold dataset yields a detailed dynamic picture of staged emplacement, separated by intervals of ponding. In some ponded areas, flow depth during emplacement (~ 5 m) was twice the preserved thickness of the final lava (2-3 m). Drainage of the ponds led to episodic surges in flow advancement, decoupled from fluctuations in vent discharge rate. We infer that the final breakout occurred after the cessation of fountaining. Such complex emplacement histories may be common for pāhoehoe lavas at Kīlauea and elsewhere in situations where the terrain is of variable slope, and/or where lava is temporarily perched and stored.

Supplementary information: The online version contains supplementary material available at 10.1007/s00445-025-01817-0.

玄武岩熔岩复杂的分阶段就位:以1974年7月克鲁厄火山流为例。
玄武岩熔岩流具有很强的破坏性。预测活跃熔岩流的未来路径和/或行为是具有挑战性的,因为地形通常不受约束,熔岩具有复杂的流变学和就位历史。保存下来的熔岩是一个重要的信息来源,结合对活动流的观测,支撑了熔岩流就位的概念模型。然而,保存下来的熔岩的价值是有限的,因为喷发前的地形和喷发时的熔岩流几何形状通常是未知的。本文利用树模数据对1974年7月美国kk - lauea火山喷发前的地形和喷发时的熔岩流几何形状进行了研究。前进的熔岩包围直立的树木后形成的树模保存了熔岩的淹没高度和最终保存的熔岩厚度。利用282个树模资料,重建了1974年7月约2.1 km长的水流的时空演化过程。树模数据集生成了一幅详细的分期就位动态图,以积水间隔分隔。在一些池塘区,就位时的流动深度(~ 5米)是最终熔岩保存厚度(2-3米)的两倍。池塘的排水导致水流推进的间歇性激增,与喷口流量的波动脱钩。我们推断,最后的爆发发生在喷泉停止之后。这种复杂的就位历史可能是普遍的pāhoehoe熔岩在Kīlauea和其他地方的地形是可变的坡度,和/或熔岩暂时停留和储存的情况下。补充信息:在线版本包含补充资料,可在10.1007/s00445-025-01817-0获得。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Bulletin of Volcanology
Bulletin of Volcanology 地学-地球科学综合
CiteScore
6.40
自引率
20.00%
发文量
89
审稿时长
4-8 weeks
期刊介绍: Bulletin of Volcanology was founded in 1922, as Bulletin Volcanologique, and is the official journal of the International Association of Volcanology and Chemistry of the Earth’s Interior (IAVCEI). The Bulletin of Volcanology publishes papers on volcanoes, their products, their eruptive behavior, and their hazards. Papers aimed at understanding the deeper structure of volcanoes, and the evolution of magmatic systems using geochemical, petrological, and geophysical techniques are also published. Material is published in four sections: Review Articles; Research Articles; Short Scientific Communications; and a Forum that provides for discussion of controversial issues and for comment and reply on previously published Articles and Communications.
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