...
首页> 外文期刊>Bulletin of Volcanology: Journal of the International Association of Volcanology and Chemistry of the Earth s Interior >Short time scales of magma-mixing processes prior to the 2011 eruption of Shinmoedake volcano, Kirishima volcanic group, Japan
【24h】

Short time scales of magma-mixing processes prior to the 2011 eruption of Shinmoedake volcano, Kirishima volcanic group, Japan

机译:日本雾岛火山群新茂岳火山在2011年喷发之前的岩浆混合过程的短时标

获取原文
获取原文并翻译 | 示例
           

摘要

We estimated time scales of magma-mixing processes just prior to the 2011 sub-Plinian eruptions of Shinmoedake volcano to investigate the mechanisms of the triggering processes of these eruptions. The sequence of these eruptions serves as an ideal example to investigate eruption mechanisms because the available geophysical and petrological observations can be combined for interpretation of magmatic processes. The eruptive products were mainly phenocryst-rich (28 vol%) andesitic pumice (SiO_2 57 wt%) with a small amount of more silicic pumice (SiO_2 62-63 wt%) and banded pumice. These pumices were formed by mixing of low-temperature mushy silicic magma (dacite) and high-temperature mafic magma (basalt or basaltic andesite). We calculated the time scales on the basis of zoning analysis of magnetite phenocrysts and diffusion calculations, and we compared the derived time scales with those of volcanic inflation/deflation observations. The magnetite data revealed that a significant mixing process (mixing I) occurred 0.4 to 3 days before the eruptions (pre-eruptive mixing) and likely triggered the eruptions. This mixing process was not accompanied by significant crustal deformation, indicating that the process was not accompanied by a significant change in volume of the magma chamber. We propose magmatic overturn or melt accumulation within the magma chamber as a possible process. A subordinate mixing process (mixing II) also occurred only several hours before the eruptions, likely during magma ascent (syn-eruptive mixing). However, we interpret mafic injection to have begun more than several tens of days prior to mixing I, likely occurring with the beginning of the inflation (December 2009). The injection did not instantaneously cause an eruption but could have resulted in stable stratified magma layers to form a hybrid andesitic magma (mobile layer). This hybrid andesite then formed the main eruptive component of the 2011 eruptions of Shinmoedake.
机译:我们估算了在2011年新月岳火山爆发之前的岩浆混合过程的时间尺度,以研究这些爆发触发过程的机制。这些喷发的顺序可作为研究喷发机制的理想示例,因为可以将可用的地球物理和岩石学观测资料结合起来来解释岩浆作用过程。喷发产物主要是富含苯石英的火山灰(28%(体积))和硅质浮石(SiO_257%(重量)),少量的硅质浮石(SiO_262-63%(重量))和带状浮石。这些粉刺是由低温糊状硅质岩浆(达克石)和高温镁铁质岩浆(玄武岩或玄武安山岩)混合而成。我们根据磁铁矿隐晶的分区分析和扩散计算来计算时间尺度,并将导出的时间尺度与火山充气/放气观测的时间尺度进行比较。磁铁矿数据显示,喷发前0.4至3天(喷发前的混合)发生了明显的混合过程(混合I),并可能触发了喷发。该混合过程没有伴随着明显的地壳变形,表明该过程没有伴随着岩浆腔室的体积的显着变化。我们建议在岩浆室内进行岩浆倾覆或融化积聚,作为可能的过程。从属的混合过程(混合II)也仅在喷发前几个小时发生,可能是在岩浆上升(同步喷发混合)期间。但是,我们将黑手党注射解释为在混合I之前已经开始了几十天,这很可能是在通货膨胀开始时发生的(2009年12月)。注入并没有立即引起喷发,但可能导致稳定的分层岩浆层形成了混合安山岩浆(活动层)。然后,这种混合的安山岩形成了2011年新月岳喷发的主要喷发成分。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号