...
首页> 外文期刊>GSA Bulletin >Emplacement and inflation of pahoehoe sheet flows: Observations and measurements of active lava flows on Kilauea Volcano, Hawaii
【24h】

Emplacement and inflation of pahoehoe sheet flows: Observations and measurements of active lava flows on Kilauea Volcano, Hawaii

机译:Pahoehoe片流的注入和充气:夏威夷基拉韦厄火山上活跃熔岩流的观测和测量

获取原文
获取原文并翻译 | 示例
           

摘要

Inflated pahoehoe sheet flows have a distinctive horizontal upper surface, which can be several hundred meters across, and are bounded by steep monoclinal uplifts. The inflated sheet flows we studied ranged from 1 to 5 m in thickness, but initially propagated as thin sheets of fluid pahoehoe lava, generally 20-30 cm thick. Individual lobes originated at outbreaks from the inflated front of a prior sheet-flow lobe and initially moved rapidly away from their source. Velocities slowed greatly within hours due to radial spreading and to depletion of lava stored within the source flow. As the outward flow velocity decreases, cooling promotes rapid crustal growth. At first, the crust behaves plastically as pahoehoe toes form. After the crust attains a thickness of 2-5 cm, it behaves more rigidly and develops enough strength to retain incoming lava, thus increasing the hydrostatic head at the flow front. The increased hydrostatic pressure is distributed evenly through the liquid lava core of the flow, resulting in uniform uplift of the entire sheet-flow lobe. Initial uplift rates are rapid (flows thicken to 1 m in 1-2 hours), but rates decline sharply as crustal thickness increases, and as outbreaks occur from the margins of the inflating lobe. One flow reached a final thickness of nearly 4 m after 350 hr. Inflation data define power-law curves, whereas crustal cooling follows square root of time relationships; the combination of data can be used to construct simple models of inflated sheet flows. As the flow advances, preferred pathways develop in the older portions of the liquid-cored flow; these pathways can evolve into lavatube systems within a few weeks. Formation of lava tubes results in highly efficient delivery of lava at velocities of several kilometers per hour to a flow front that may be moving 1-2 orders of magnitude slower. If advance of the sheet flow is terminated, the tube remains filled with lava that crystallizes in situ rather than draining to form the cave-like lava tubes commonly associated with pahoehoe flows. Inflated sheet flows from Kilauea and Mauna Loa are morphologically similar to some thick Icelandic and submarine sheet flows, suggesting a similar mechanism of emplacement. The planar, sheet-like geometry of flood-basalt flows may also result from inflation of sequentially emplaced flow lobes rather than nearly instantaneous emplacement as literal floods of lava.
机译:膨胀的Pahoehoe薄板流具有独特的水平 上表面,可以跨过几百米,并且 受到陡峭的单斜隆起的限制。我们研究的膨胀后的薄板流 的厚度范围为1至5 m,但最初 传播为薄薄的流动性的hoe草熔岩,通常 20- 30厘米厚。单个裂片起源于 先前的片状流裂片的膨胀前部爆发,最初 迅速远离其来源。由于径向扩散以及源流中存储的熔岩 耗尽,速度在数小时内大大降低了 。随着向外流速 的减小,冷却促进了地壳的快速生长。首先, 地壳起着hoe头的形状,具有塑性。 地壳的厚度达到2-5厘米后,其表现就更加坚硬 并形成足够的强度以保留进入的熔岩,从而增加了 的静水压力朝流头前进。增大的静水压力 均匀地分布在整个流动的熔岩岩心 中,从而导致整个薄片流 瓣的均匀隆起。最初的上升速度很快(在1-2小时内流量增厚至1 m),但随着地壳厚度的增加( )以及从边界边缘爆发而急剧上升。 350 hr后,一个流的最终厚度接近4 m。 膨胀数据定义了幂律曲线,而地壳冷却 跟随时间关系的平方根; 数据的组合可用于构造充气薄板 流动的简单模型。 随着流动的进行,首选的路径在较早的 部分液芯流;这些途径可以在几周内发展成 进入熔岩管系统。熔岩 管的形成导致熔岩以每小时数公里的速度 高效地输送到可能正在移动的流动前沿 1-2数量级变慢。如果薄板流 的前进被终止,则该管将保持充满在原位结晶 的熔岩,而不是排空以形成类似洞穴的熔岩管 通常与pahoehoe流相关。 来自基拉韦厄和莫纳罗亚山脉的膨胀薄板流在形态上类似于某些厚的冰岛和海底薄板流,表明 a类似的安置机制。洪水玄武岩流的平面,片状几何形状 也可能是由于连续 放置的流瓣的膨胀而不是字面上的几乎瞬时放置 熔岩泛滥。

著录项

  • 来源
    《GSA Bulletin》 |1994年第3期|351-370|共20页
  • 作者单位

    U. S. Geological Survey, Hawaiian Volcano Observatory, Hawaii National Park, Hawaii 96718;

    U. S. Geological Survey, Hawaiian Volcano Observatory, Hawaii National Park, Hawaii 96718;

    U. S. Geological Survey, Hawaiian Volcano Observatory, Hawaii National Park, Hawaii 96718;

    Victoria University of Wellington, Wellington, New Zealand;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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