首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Impact of the lateral blast on the spatial pattern and grain size characteristics of the 18 May 1980 Mount St. Helens fallout deposit
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Impact of the lateral blast on the spatial pattern and grain size characteristics of the 18 May 1980 Mount St. Helens fallout deposit

机译:横向爆炸对1980年5月18日圣海伦斯山沉积物的空间格局和粒度特征的影响

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The 18 May 1980 eruption of Mount St. Helens started with a lateral blast that fed a pyroclastic surge, which then uplifted to form a co-blast plume. Thirty minutes later, Plinian activity started at the vent and fluctuated in intensity for similar to 9h. The resulting fallout deposit, documented to >600km from vent, presents some striking features: (1) displacement of the overall deposit to the north of the vent, (2) a secondary thickness and mass maximum at similar to 300km from vent, (3) a total grain size distribution dominated by fine ash (62wt % of the deposit <63 mu m), and (4) individual grain size distributions that vary dramatically in the crosswind direction from strongly bimodal in the south to skewed unimodal in the north. Results from a new deconvolution of the individual grain size distributions show that they are a combination of a coarse subpopulation that decreases in size with distance from vent and a constant fine subpopulation with a mean of approximate to 15 mu m. Relative proportions of each subpopulation vary asymmetrically in the crosswind directions, with the fine subpopulation preponderant toward the north and the coarse one dominating the south of the deposit, both reach their absolute maxima in mass on the deposit axis. Componentry analyses of selected samples show that blast-derived material is greatly enriched toward the north of the deposit. These results indicate that the co-blast plume dispersed fine-grained material over great distances and dominated the fine subpopulation. Comparison with reanalysis data of atmospheric wind fields and satellite images of the spreading ash cloud suggests contrasting ash transport and depositional processes for the (early) co-blast plume and the (later) vent-derived Plinian plumes. The co-blast plume is displaced to the north; it had a high overshoot height, and eastward dispersion via strong winds low in the stratosphere (similar to 10-15km). The Plinian plumes were lower and dispersed most of the material to the southeast as the direction of high-velocity winds shifted just before the late climactic Plinian eruptive phase. Fine ash (fine subpopulation) was deposited continuously throughout the deposit, with an increase of sedimentation rate similar to 300km from the vent where there is a secondary maximum in the deposit mass and thickness. Fine ash probably settled by a combination of enhanced sedimentation mechanisms, including not only aggregation but also gravitational convective instabilities of cloud base, hydrometeor formation and destruction, and entrainment of small particles by larger ones. Finally, we show that half of the deposit (by mass) in the medial area was deposited by the co-blast plume, and that a significant proportion of the Mount St. Helens fallout deposit is nonjuvenile, which has implications for the magmatic budget of this eruption.
机译:1980年5月18日,圣海伦斯火山喷发始于一次侧向爆炸,一次火山碎屑浪潮,然后向上隆升形成共同爆炸羽。三十分钟后,Plinian活动开始于通风口,强度持续波动约9小时。所记录的沉积物沉积物距排气口的距离超过600公里,具有一些显着特征:(1)总沉积物向排气口以北的位移;(2)次厚度和最大质量距排气口的距离约300 km,(3 )以细灰(占沉积物的62wt%<63微米)为主导的总粒度分布,以及(4)在侧风方向上的显着变化,从南部的强双峰到北部的偏斜单峰。对单个晶粒尺寸分布进行新的反卷积的结果表明,它们是随距离排气孔距离而减小的粗亚种群和平均约15微米的恒定细亚种群的组合。每个子种群的相对比例在侧风方向上不对称地变化,细的子种群在沉积物的北部占优势,而粗略的子种群在沉积物的南部占优势,两者在沉积物轴上都达到了质量的绝对最大值。选定样品的成分分析表明,爆炸产生的物质在矿床的北部大量富集。这些结果表明,共吹羽流在很长的距离内分散了细粒物质,并支配了细粒亚群。与大气风场的再分析数据和散布的灰云的卫星图像进行的比较表明,(早期)同爆烟羽和(后来)发源的普利尼烟羽的灰分输运和沉积过程形成对比。爆炸的烟羽向北移动。它具有较高的超调高度,并通过平流层低风(约10-15公里)向东扩散。由于高速风的方向正好在晚气候普利尼山喷发期之前转移,因此普利尼山烟羽较低,大部分物质散布到东南部。细粉尘(细小亚群)连续沉积在整个沉积物中,沉积速率的增加类似于距喷口300公里处的沉积,沉积物质量和厚度是次要最大值。细灰可能通过增强的沉积机制来解决,这些机制不仅包括聚集,还包括云基的重力对流不稳定性,水凝流星的形成和破坏,以及较大颗粒的夹带。最后,我们表明,内侧区域的沉积物(按质量计)有一半是通过共爆羽流沉积的,并且圣海伦斯山有很大一部分沉积物是非幼稚的,这对岩浆的预算有影响。这种喷发。

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