meltPT: A Python package for basaltic whole-rock thermobarometric analysis with application to Hawaiʻi

IF 2.5 Q2 Earth and Planetary Sciences
Volcanica Pub Date : 2023-02-21 DOI:10.30909/vol.06.01.6376
F. McNab, P. Ball
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引用次数: 2

Abstract

Quantifying the depths and temperatures from which igneous rocks are derived is an important step in understanding volcanic, magmatic and mantle processes. We present meltPT, a Python package that allows users to apply twelve published whole-rock thermobarometers within a consistent framework, as well as combine thermobarometric results and geothermal models to estimate mantle potential temperatures. We apply meltPT to basaltic rocks from mid-ocean ridges and the Hawaiian Islands. We find mid-ocean ridge basalts equilibrate between 1–2 GPa and 1275–1475 ℃, corresponding to an ambient mantle potential temperature of ~1400 ℃. We estimate that the Hawaiian plume has an excess temperature of ~150 ℃. Hawaiian melt-equilibration depths increase from 1–3 GPa to 2.5–5 GPa through each island's life cycle. Our results indicate that multiple lithologies are present within the plume, and that transient plume reconfiguration in response to changing plate velocity is a viable mechanism for generating Hawaiʻi's two geochemically distinct plume tracks.
meltPT:一个用于玄武岩全岩热气压分析的Python包,应用于夏威夷
量化火成岩形成的深度和温度是理解火山、岩浆和地幔作用的重要一步。我们提供了一个Python包meltPT,它允许用户在一致的框架内应用12个已发表的全岩温压表,并将热压结果和地热模型结合起来估计地幔潜在温度。我们将熔融pt应用于大洋中脊和夏威夷群岛的玄武岩。洋中脊玄武岩平衡在1 ~ 2 GPa和1275 ~ 1475℃之间,对应的环境地幔位温为~1400℃。我们估计夏威夷羽流的过量温度为~150℃。夏威夷融化平衡深度在每个岛屿的生命周期中从1-3 GPa增加到2.5-5 GPa。我们的研究结果表明,羽流内部存在多种岩性,响应板块速度变化的瞬态羽流重新配置是产生夏威夷岛两条地球化学上截然不同的羽流轨迹的可行机制。
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
Volcanica
Volcanica Earth and Planetary Sciences-Geology
CiteScore
4.40
自引率
0.00%
发文量
21
审稿时长
21 weeks
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