首页> 外文期刊>Journal of Volcanology and Geothermal Research >Variations in welding characteristics within the Plinian air-fall deposit of the Middle Pumice eruption, Santorini, Greece
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Variations in welding characteristics within the Plinian air-fall deposit of the Middle Pumice eruption, Santorini, Greece

机译:希腊圣托里尼中浮岩喷发的Plinian空降矿床内焊接特征的变化

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摘要

The welded Plinian air-fall deposit of the Middle Pumice A (MP-A) eruption, Santorini, Greece (144.6 ka), was analysed in order to document welding characteristics and determine the factors that control welding due to the sintering of hot ash- to block-sized pyrodasts. There are vertical and lateral variations in welding intensity, with welding increasing upwards within deposit sections and decreasing laterally away from the source. Four welding grades are distinguished: a = densely-welded, b = slightly-welded, c = tack-welded, and d = non-welded. Lateral welding zones are defined by the highest welding grade observed: zone A = denselywelded (<0.25km from the source); zone B = slightly-welded (0.25-1.26 km); zone C = tack-welded (1.26-3.7 km), and zone D = non-welded (>3.7 km). Pumice density increases (and porosity decreases) with welding, with the most densely-welded part having a density of 2290 kg m~(-3) and a porosity of 5%. Distal, non-welded pumices have a density of 370 kg m~(-3) and porosities of >75%. Clast oblateness varies from 0.79 in the densely-welded proximal deposit sections to 0.54 in the distal, non-welded deposits in southern Thera. Strain, determined using the Rf/φ method, indicates that the deposit is moderately flattened but relatively undeformed. The MP-A deposit is dacitic to andesitic in composition, becoming more mafic with stratigraphic height, where the degree of welding is highest. Welding is controlled by geochemical variations, compactional load and local variations in accumulation rate and clast sizes.
机译:分析了希腊圣托里尼岛中浮石A(MP-A)喷发的Plinian空降沉积物(144.6 ka),以便记录焊接特性并确定由于热灰分烧结而控制焊接的因素。块大小的pyrodast。焊接强度存在垂直和横向变化,在熔敷区中,焊接向上增加,而远离焊源的方向则横向减小。区分了四个焊接等级:a =密集焊接,b =轻微焊接,c =定位焊接,d =非焊接。横向焊接区由观察到的最高焊接等级定义:A区=密集焊接(距焊源<0.25 km); B区=轻微焊接(0.25-1.26 km); C区=点焊(1.26-3.7 km),D区=非焊接(> 3.7 km)。浮石的密度随着焊接的增加而增加(孔隙率降低),其中最致密的零件的密度为2290 kg m〜(-3),孔隙率为5%。远端非焊接式粉刺的密度为370 kg m〜(-3),孔隙率> 75%。碎裂扁度从密集焊接的近端沉积物中的0.79到南部Thera的远端非焊接沉积物中的0.54不等。使用Rf /φ方法确定的应变表明,沉积物被适度弄平,但相对不变形。 MP-A熔敷层的成分从大山岩到安第斯山岩,随着地层高度的增加而变得镁铁质,在这里焊接程度最高。焊接受地球化学变化,压实载荷以及堆积速率和碎屑尺寸的局部变化控制。

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