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HJ Moore, GG Schaber (1975)
An estimate of the yield strength of Imbrium flowsProc Lunar Plan Sci Conf, 6th
R. Denlinger (1990)
A Model for Dome Eruptions at Mount St. Helens, Washington Based on Subcritical Crack Growth
G. Walker (1967)
Thickness and Viscosity of Etnean LavasNature, 213
G. Frazzetta, R. Romano (1984)
The 1983 Etna eruption: Event chronology and morphological evolution of the lava flowBulletin Volcanologique, 47
G Hulme (1974)
The interpretation of lava flow morphology. GeophysJ R Astr Soc, 39
H. Pinkerton, R. Stevenson (1992)
Methods of determining the rheological properties of magmas at sub-liquidus temperatures.Journal of Volcanology and Geothermal Research, 53
L. Wilson, J. Head (1983)
A comparison of volcanic eruption processes on Earth, Moon, Mars, Io and VenusNature, 302
R. Griffiths, J. Fink (1992)
The morphology of lava flows in planetary environments: Predictions from analog experimentsJournal of Geophysical Research, 97
P. Lipman, Norman Banks, J. Rhodes (1985)
Degassing-induced crystallization of basaltic magma and effects on lava rheologyNature, 317
H. Huppert, J. Shepherd, R. Sigurdsson, S. Sparks (1982)
On lava dome growth, with application to the 1979 lava extrusion of the soufrière of St. VincentJournal of Volcanology and Geothermal Research, 14
G. Walker, A. Huntingdon, A. Sanders, J. Dinsdale (1973)
Lengths of Lava Flows [and Discussion]Philosophical Transactions of the Royal Society A, 274
Rosaly Lopes, J. Guest (1982)
Lava Flows on ETNA, A Morphometric Study, 82
RMC Lopes, JE Guest (1982)
The comparative study of the planets
J. Guest, C. Kilburn, H. Pinkerton, A. Duncan (1987)
The evolution of lava flow-fields: observations of the 1981 and 1983 eruptions of Mount Etna, SicilyBulletin of Volcanology, 49
H Pinkerton, RJ Stevenson (1992)
Methods of determining the rheological properties of lavas from their physico-chemical propertiesJ Volcanol Geotherm Res, 53
D. Swanson (1973)
Pahoehoe Flows from the 1969–1971 Mauna Ulu Eruption, Kilauea Volcano, HawaiiGeological Society of America Bulletin, 84
R. Griffiths, J. Fink (1992)
Solidification and Morphology of Submarine Lavas: A Dependence on Extrusion RateJournal of Geophysical Research, 97
PW Lipman, NG Banks, JM Rhodes (1985)
Gas-release induced crystallisation of 1984 Mauna Loa magma, Hawaii, and effects on lava rheologyNature, 317
R. Sparks, H. Pinkerton, G. Hulme (1976)
Classification and formation of lava levees on Mount Etna, SicilyGeology, 4
R. Sparks, H. Pinkerton (1978)
Effect of degassing on rheology of basaltic lavaNature, 276
H Pinkerton, RSJ Sparks (1978)
Field measurements of the rheology of flowing lavaNature, 276
J. Fink, R. Griffiths (1990)
Radial spreading of viscous-gravity currents with solidifying crustJournal of Fluid Mechanics, 221
J. Crisp, S. Baloga (1990)
A model for lava flows with two thermal componentsJournal of Geophysical Research, 95
A. Borgia, S. Linneman, D. Spencer, L. Morales, J. Andre (1983)
Dynamics of lava flow fronts, Arenal Volcano, Costa RicaJournal of Volcanology and Geothermal Research, 19
J. Naranjo, R. Sparks, M. Stasiuk, H. Moreno, G. Ablay (1992)
Morphological, structural and textural variations in the 1988–1990 andesite lava of Lonquimay Volcano, ChileGeological Magazine, 129
C. Cigolini, A. Borgia, L. Casertano (1984)
Intra-crater activity, aa-block lava, viscosity and flow dynamics: Arenal Volcano, Costa RicaJournal of Volcanology and Geothermal Research, 20
H. Pinkerton, R. Sparks (1978)
Field measurements of the rheology of lavaNature, 276
L Wilson, JW Head (1983)
A comparison of eruption processes on Earth, Moon, Mars, Io and VenusNature, 302
GA Macdonald (1972)
Volcanoes
M. Stasiuk, C. Jaupart, R. Sparks (1993)
On the variations of flow rate in non-explosive lava eruptionsEarth and Planetary Science Letters, 114
M. Malin (1980)
Lengths of Hawaiian lava flowsGeology, 8
GPL Walker (1973)
Lengths of lava flowsPhil Trans R Soc London A, 274
H. Shaw, T. Wright, D. Peck, R. Okamura (1968)
The viscosity of basaltic magma; an analysis of field measurements in Makaopuhi lava lake, HawaiiAmerican Journal of Science, 266
S. Rowland, G. Walker (1988)
Mafic-crystal distributions, viscosities, and lava structures of some Hawaiian lava flowsJournal of Volcanology and Geothermal Research, 35
D. Pieri, S. Baloga (1986)
Eruption rate, area, and length relationships for some Hawaiian lava flowsJournal of Volcanology and Geothermal Research, 30
G. Walker (1971)
Compound and simple lava flows and flood basaltsBulletin Volcanologique, 35
J. Fink, R. Griffiths (1992)
A laboratory analog study of the surface morphology of lava flows extruded from point and line sourcesJournal of Volcanology and Geothermal Research, 54
R. Iverson (1990)
Lava Domes Modeled as Brittle Shells that Enclose Pressurized Magma, with Application to Mount St. Helens
G. Hulme (1982)
A review of lava flow processes related to the formation of lunar sinuous rillesGeophysical surveys, 5
G Frazzetta, R Romano (1984)
The 1983 Etna eruption event chronology and morphological development of the lava flowBull Volcanol, 47
H. Pinkerton (1987)
Factors affecting the morphology of lava flowsEndeavour, 11
Z. Danes (1972)
Dynamics of lava flowsJournal of Geophysical Research, 77
S. Blake (1990)
Viscoplastic Models of Lava Domes
C. Kilburn, Rosaly Lopes (1991)
General patterns of flow field growth: Aa and blocky lavasJournal of Geophysical Research, 96
L. Wilson, H. Pinkerton, R. Macdonald (1987)
Physical Processes in Volcanic EruptionsAnnual Review of Earth and Planetary Sciences, 15
G. Hulme (1974)
The Interpretation of Lava Flow MorphologyGeophysical Journal International, 39
EW Wolfe, CA Neal, NG Banks, TJ Duggan (1988)
Geological observations and chronology of eruptive events during the first 20 episodes of the Pu'u ‘O’o eruption, January 3, 1983 through June 8, 1984USGS Prof Paper, 1463
G. Wadge (1981)
The variation of magma discharge during basaltic eruptionsJournal of Volcanology and Geothermal Research, 11
K. Krauskopf (1948)
Lava Movement at PARÍCUTIN Volcano, MexicoGeological Society of America Bulletin, 59
M. Stasiuk, C. Jaupart, R. Stephen, J. Sparks (1993)
Influence of cooling on lava-flow dynamicsGeology, 21
M. Dragoni, S. Pondrelli, A. Tallarico (1992)
Longitudinal deformation of a lava flow: the influence of Bingham rheologyJournal of Volcanology and Geothermal Research, 52
G. Wadge (1983)
The magma budget of Volcan Arenal, Costa Rica from 1968 to 1980Journal of Volcanology and Geothermal Research, 19
G. Walker (1973)
Mount Etna and the 1971 eruption - Lengths of lava flowsPhilosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences, 274
RSJ Sparks, H Pinkerton (1978)
Effect of degassing on the rheology of lavaNature, 267
G. Walker (1989)
Spongy pahoehoe in Hawaii: A study of vesicle-distribution patterns in basalt and their significanceBulletin of Volcanology, 51
H. Pinkerton, R. Sparks (1976)
The 1975 sub-terminal lavas, mount etna: a case history of the formation of a compound lava fieldJournal of Volcanology and Geothermal Research, 1
HE Huppert, JB Shepherd, H Sigurdsson, RSJ Sparks (1982)
On lava dome growth, with reference to the 1979 extrusion of the Soufriere of St. VincentJ Volcanol Geotherm Res, 14
G. Robson (1967)
Thickness of Etnean LavasNature, 216
J. Fink (1990)
Lava Flows and Domes
GPL Walker (1971)
Compound and simple lava flowsBull Volcanol, 35
C. Manley (1992)
Extended cooling and viscous flow of large, hot rhyolite lavas: implications of numerical modeling resultsJournal of Volcanology and Geothermal Research, 53
G. Hulme, G. Fielder (1977)
Effusion rates and rheology of lunar lavasPhilosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences, 285
H. Moore, D. Arthur, G. Schaber (2011)
Yield strengths of flows on the earth, Mars, and moon. [application of Bingham plastic model to lava flows]
J. Fink, J. Zimbelman (1986)
Rheology of the 1983 Royal Gardens basalt flows, Kilauea Volcano, HawaiiBulletin of Volcanology, 48
Factors which control lava flow length are still not fully understood. The assumption that flow length as mainly influenced by viscosity was contested by Walker (1973) who proposed that the length of a lava flow was dependent on the mean effusion rate, and by Malin (1980) who concluded that flow length was dependent on erupted volume. Our reanalysis of Malin's data shows that, if short duration and tube-fed flows are eliminated, Malin's Hawaiian flow data are consistent with Walker's assertion. However, the length of a flow can vary, for a given effusion rate, by a factor of 7, and by up to 10 for a given volume. Factors other than effusion rate and volume are therefore clearly important in controlling the lengths of lava flows. We establish the relative importance of the other factors by performing a multivariate analysis of data for recent Hawaiian lava flows. In addition to generating empirical equations relating flow length to other variables, we have developed a non-isothermal Bingham flow model. This computes the channel and levee width of a flow and hence permits the advance rates of flows and their maximum cooling-limited lengths for different gradients and effusion rates to be calculated. Changing rheological properties are taken into account using the ratio of yield strength to viscosity; available field measurements show that this varies systematically from the vent to the front of a lava flow. The model gives reasonable agreement with data from the 1983–1986 Pu'u ‘O’o eruptions and the 1984 eruption of Mauna Loa. The method has also been applied to andesitic and rhyolitic lava flows. It predicts that, while the more silicic lava flows advance at generally slower rates than basaltic flows, their maximum flow lengths, for a given effusion rate, will be greater than for basaltic lava flows.
Bulletin of Volcanology – Springer Journals
Published: Aug 21, 2004
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