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爆炸岩石破碎中粒度分布的理论解释。

A theoretical explanation of grain size distributions in explosive rock fragmentation.

作者信息

Fowler A C, Scheu Bettina

机构信息

MACSI, University of Limerick, Limerick, Republic of Ireland; OCIAM, University of Oxford, Oxford, UK.

Earth and Environmental Sciences , LMU München, München, Germany.

出版信息

Proc Math Phys Eng Sci. 2016 Jun;472(2190):20150843. doi: 10.1098/rspa.2015.0843.

Abstract

We have measured grain size distributions of the results of laboratory decompression explosions of volcanic rock. The resulting distributions can be approximately represented by gamma distributions of weight per cent as a function of [Formula: see text], where is the grain size in millimetres measured by sieving, with a superimposed long tail associated with the production of fines. We provide a description of the observations based on sequential fragmentation theory, which we develop for the particular case of 'self-similar' fragmentation kernels, and we show that the corresponding evolution equation for the distribution can be explicitly solved, yielding the long-time lognormal distribution associated with Kolmogorov's fragmentation theory. Particular features of the experimental data, notably time evolution, advection, truncation and fines production, are described and predicted within the constraints of a generalized, 'reductive' fragmentation model, and it is shown that the gamma distribution of coarse particles is a natural consequence of an assumed uniform fragmentation kernel. We further show that an explicit model for fines production during fracturing can lead to a second gamma distribution, and that the sum of the two provides a good fit to the observed data.

摘要

我们测量了火山岩实验室减压爆炸结果的粒度分布。所得分布可以用重量百分比的伽马分布近似表示为[公式:见原文]的函数,其中 是通过筛分测量的毫米级粒度,同时叠加有与细粒产生相关的长尾。我们基于顺序破碎理论对观测结果进行了描述,该理论是针对“自相似”破碎核的特定情况发展而来的,并且我们表明分布的相应演化方程可以明确求解,得到与科尔莫戈罗夫破碎理论相关的长时间对数正态分布。在广义“还原”破碎模型的约束下,描述并预测了实验数据的特定特征,特别是时间演化、平流、截断和细粒产生,并且表明粗颗粒的伽马分布是假定均匀破碎核的自然结果。我们进一步表明,压裂过程中细粒产生的显式模型可以导致第二个伽马分布,并且两者之和能很好地拟合观测数据。

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