Characterizing Volcanic Ash Density and Its Implications on Settling Dynamics

被引:3
作者
Lau, Sing [1 ]
Grainger, Roy G. [2 ]
Taylor, Isabelle A. [2 ]
机构
[1] Univ Oxford, Atmospher Ocean & Planetary Phys, Oxford, England
[2] Univ Oxford, COMET, Atmospher Ocean & Planetary Phys, Oxford, England
基金
英国自然环境研究理事会;
关键词
volcanic ash density; dispersion modeling; gas pycnometry; 1989-1990; ERUPTION; REDOUBT VOLCANO; TEPHRA; PARTICLES; EVOLUTION; DEPOSITS; ALASKA;
D O I
10.1029/2023JD039903
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
Volcanic ash clouds are carefully monitored as they present a significant hazard to humans and aircraft. The primary tool for forecasting the transport of ash from a volcano is dispersion modeling. These models make a number of assumptions about the size, sphericity and density of the ash particles. Few studies have measured the density of ash particles or explored the impact that the assumption of ash density might have on the settling dynamics of ash particles. In this paper, the raw apparent density of 23 samples taken from 15 volcanoes are measured with gas pycnometry, and a negative linear relationship is found between the density and the silica content. For the basaltic ash samples, densities were measured for different particle sizes, showing that the density is approximately constant for particles smaller than 100 mu m, beyond which it decreases with size. While this supports the current dispersion model used by the London Volcanic Ash Advisory Centre (VAAC), where the density is held at a constant (2.3 g cm-3), inputting the measured densities into a numerical simulation of settling velocity reveals a primary effect from the silica content changing this constant. The VAAC density overestimates ash removal times by up to 18%. These density variations, including those varying with size beyond 100 mu m, also impact short-range particle-size distribution measurements and satellite retrievals of ash. Volcanic ash clouds are carefully monitored as they present a significant hazard to humans and aircraft. Dispersion modeling is a primary tool used to forecast ash flows from volcanoes. These models make a number of assumptions about the size, sphericity (roundness) and density of the ash particles. Few studies have measured the density of ash particles or explored the impact that the assumption of ash density might have on the dispersion forecasts. In this paper, the density of 23 samples taken from 15 volcanoes are measured, and a negative linear relationship is found between the density and the silica content. For the basaltic ash samples (the most common type of ash), densities were measured for different particle sizes, showing that the density is approximately constant for particles smaller than 100 mu m, beyond which it decreases with size. This supports the London Volcanic Ash Advisory Centre keeping density constant in their current model, but in fact this constant changes with silica content, leading to an overestimation of ash removal times by up to 18%. These density deviations also impact short-range particle-size distribution measurements and satellite retrievals of ash. The density of volcanic ash is measured as a function of particle size for a range of eruptionsSilica content and particle size negatively correlate with densityThe density of particles smaller than 100 mu m is approximately constant but is dependent on silica content
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页数:11
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共 55 条
  • [1] Shifting styles of basaltic explosive activity during the 2002-03 eruption of Mt. Etna, Italy
    Andronico, Daniele
    Cristaldi, Antonio
    Del Carlo, Paola
    Taddeucci, Jacopo
    [J]. JOURNAL OF VOLCANOLOGY AND GEOTHERMAL RESEARCH, 2009, 180 (2-4) : 110 - 122
  • [2] Sensitivity of dispersion model forecasts of volcanic ash clouds to the physical characteristics of the particles
    Beckett, F. M.
    Witham, C. S.
    Hort, M. C.
    Stevenson, J. A.
    Bonadonna, C.
    Millington, S. C.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2015, 120 (22) : 11,636 - 11,652
  • [3] Quantifying the mass loading of particles in an ash cloud remobilized from tephra deposits on Iceland
    Beckett, Frances
    Kylling, Arve
    Siguroardottir, Guomunda
    von Loewis, Sibylle
    Witham, Claire
    [J]. ATMOSPHERIC CHEMISTRY AND PHYSICS, 2017, 17 (07) : 4401 - 4418
  • [4] Atmospheric Dispersion Modelling at the London VAAC: A Review of Developments since the 2010 Eyjafjallajokull Volcano Ash Cloud
    Beckett, Frances M.
    Witham, Claire S.
    Leadbetter, Susan J.
    Crocker, Ric
    Webster, Helen N.
    Hort, Matthew C.
    Jones, Andrew R.
    Devenish, Benjamin J.
    Thomson, David J.
    [J]. ATMOSPHERE, 2020, 11 (04)
  • [5] Sedimentation from strong volcanic plumes
    Bonadonna, C
    Phillips, JC
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2003, 108 (B7)
  • [6] Tephra sedimentation during the 2010 Eyjafjallajokull eruption (Iceland) from deposit, radar, and satellite observations
    Bonadonna, C.
    Genco, R.
    Gouhier, M.
    Pistolesi, M.
    Cioni, R.
    Alfano, F.
    Hoskuldsson, A.
    Ripepe, M.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2011, 116
  • [7] THE 1989-1990 ERUPTION OF REDOUBT VOLCANO, ALASKA - IMPACTS ON AIRCRAFT OPERATIONS
    CASADEVALL, TJ
    [J]. JOURNAL OF VOLCANOLOGY AND GEOTHERMAL RESEARCH, 1994, 62 (1-4) : 301 - 316
  • [8] The glaciovolcanic evolution of an andesitic edifice, South Crater, Tongariro volcano, New Zealand
    Cole, R. P.
    White, J. D. L.
    Conway, C. E.
    Leonard, G. S.
    Townsend, D. B.
    Pure, L. R.
    [J]. JOURNAL OF VOLCANOLOGY AND GEOTHERMAL RESEARCH, 2018, 352 : 55 - 77
  • [9] Effect of particle volume fraction on the settling velocity of volcanic ash particles: insights from joint experimental and numerical simulations
    Del Bello, Elisabetta
    Taddeucci, Jacopo
    Vitturi, Mattia de' Michieli
    Scarlato, Piergiorgio
    Andronico, Daniele
    Scollo, Simona
    Kueppers, Ulrich
    Ricci, Tullio
    [J]. SCIENTIFIC REPORTS, 2017, 7
  • [10] Dunn M. G., 1994, Volcanic ash and aviation safety: Proceedings of the first international symposium on volcanic ash and aviation safety, V2047