首页> 外文期刊>Journal of Volcanology and Geothermal Research >Permeability and pore-connectivity variation of pumices from a single pyroclastic flow eruption: Implications for partial fragmentation
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Permeability and pore-connectivity variation of pumices from a single pyroclastic flow eruption: Implications for partial fragmentation

机译:一次火山碎屑流喷发过程中浮质的渗透性和孔隙连通性变化:部分破碎的含义

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The relationship between permeability and vesicularity in volcanic rocks has been used to infer the degassing behavior of hydrous magma. Recent data on natural samples from various eruptions show a wide variation, fitting a power-law relationship of the percolation models with low (<30%) critical vesicularity (Φ_C)- In this study, we present data on permeability and pore-connectivity of juvenile rhyolitic pumice clasts in a pyroclastic flow around Onikobe volcano, NE Japan, and investigate their relationship with vesicularity developed in a single eruption event. The permeability of the pumices having a relatively low abundance of microlites and microphenocrysts shows a trend increasing by 4 orders of magnitude (from 10~(-13.8) to 10~(-10.1) m~2) in a high and narrow vesicularity range (from 72 to 80%). This trend intersects at a high angle with the fit to the permeability-vesicularity data in the previous studies that has a low Φ_c. and is located on the extension of the trend for the products of isotropic decompression experiments. The two-dimensional (2D) connectivities of pores for the pumices were also measured from thin sections. From the point of view of percolation theory, connectivity provides information about the probability of percolation. They showed a steep increase from ca. 0 to 0.7 in an almost similar vesicularity range, as compared to their permeabilities. We attribute the increase in 2D connectivity to the increasing amount of ruptured bubble walls, which might have provided less-tortuous paths through larger apertures for gas flow. This, in turn, would cause an effective increase in the permeability. Aggregates of bubble-wall-shaped glass shards were found in the pumices, and their amount and degree of welding are higher in the pumices that have a higher abundance of microlites and microphenocrysts. These pumices have relatively high permeability and 2D connectivity at low vesicularity, which is accounted for by the existence of large irregularly shaped pores. These textural characteristics suggest that a series of partial fragmentation processes, including local rupturing of bubble walls and subsequent foam-collapse with permeable gas flow, might have occurred before the ultimate bulk fragmentation, thus resulting in the increase in permeability. We suggest that the 2D connectivity of pores is a useful parameter to quantify the degree of fragmentation of bubble walls and has the potential for use to assess their permeability.
机译:火山岩中渗透率与囊泡性之间的关系已被用来推断含水岩浆的脱气行为。来自各种喷发的天然样品的最新数据显示出很大的变化,拟合了低(<30%)临界水泡(Φ_C)的渗流模型的幂律关系。在这项研究中,我们提供了有关渗透率和孔隙连通性的数据幼年流纹质浮石在日本东北的Onikobe火山周围形成火山碎屑流,并研究它们与一次喷发事件中形成的囊泡的关系。在较高和较窄的囊泡范围内,微晶岩和微隐晶岩含量相对较低的浮游生物的渗透率显示出增加了四个数量级的趋势(从10〜(-13.8)增至10〜(-10.1)m〜2)( (从72%到80%)。该趋势与以前的研究中具有较低Φ_c的渗透率-水泡性数据的拟合高度相交。并且位于各向同性减压实验产品趋势的延伸。还从薄片上测量了孔的二维(2D)连通性。从渗滤理论的角度来看,连通性提供了有关渗滤概率的信息。他们显示,从与它们的渗透率相比,在几乎相似的囊泡范围内为0到0.7。我们将2D连通性的增加归因于破裂的气泡壁数量的增加,这可能已经通过较大的孔口提供了较少曲折的路径进行气体流动。反过来,这将导致渗透率的有效增加。在粉尘中发现气泡壁状玻璃碎片的聚集体,并且在具有大量微晶石和微细晶的粉尘中,它们的焊接量和焊接程度更高。这些小孔在较低的水泡状态下具有较高的渗透性和2D连通性,这是由于存在大的不规则形状的孔而造成的。这些质地特征表明,在最终的整体碎裂之前可能已经发生了一系列局部碎裂过程,包括气泡壁的局部破裂和随后的泡沫与可渗透气流的塌陷,从而导致渗透率的增加。我们建议毛孔的2D连接性是量化泡沫壁破裂程度的有用参数,并具有评估其渗透性的潜力。

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