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Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive Styles Nonexplosive Eruptions Explosive Eruptions Volcanoes and Plate Tectonics Shield Volcanoes Strato Volcanoes Pyroclastic Cones Other Features
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Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Dec 21, 2015

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Page 1: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Outline #3 Volcanic Hazards and RisksESS 315/POE 313

Volcanism and MagmaProperties of Magma-composition-dissolved gases-temperature-viscosity

Eruptive StylesNonexplosive EruptionsExplosive Eruptions

Volcanoes and Plate TectonicsShield VolcanoesStrato VolcanoesPyroclastic ConesOther Features

Page 2: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Volcanic HazardsPrimary Effects-lava flows-pyroclastic eruptions-poisonous gas emissions

Secondary Effects-mudflows and debris avalanches-flooding (glacial outburst floods)-tsunamis-seismicity-atmospheric effects and climate change

Volcanic Hazards along the Cascadia Subduction Zone

Predicting EruptionsMonitoring the Movement of Magma -seismic studies -magnetic field changes-electrical resistivity

Physical Anomalies and Precursor Phenomena-ground deformation-change in heat output-change in the composition of gases-local seismic activity

Page 3: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.
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Basalt flows will travel great distances and slope angles will reflect low viscosity.

Page 9: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Rhyolite/dacite flows will retain steep slope fronts because of high viscosity.

Page 10: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Mono Craters, California: VEI - 1-3

Page 11: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Mount Saint Helens: VEI = 5

Page 12: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Mount Pinatubo: VEI 6

Page 13: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Bishop Ash in alluvial fan deposit.

Longvalley Caldera: VEI = 7.

Page 14: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Yellowstone Caldera: VEI = 8

Page 15: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Hawaiian Type Eruption

Page 16: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Phreatic Eruption: MSH April 4, 1980 Plinian Eruption: St. Pierre 1903

Page 17: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.
Page 18: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Low viscosity basalt flows erupted along the East African Rift Zone travel great distances and create broad lava plateaus.

Page 19: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Although basaltic eruptions tend to be effusive, contact with snow and ice can create catastrophic outburst floods.

Page 20: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Volcanism associated with subduction zones tends to be explosive as andesitic and dacitic magma has a relatively high viscosity coupled with high gas content.

Page 21: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.
Page 22: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.

Oceanic hotspots produce basaltic shield volcanoes with relatively gentle slope profiles.

Page 23: Outline #3 Volcanic Hazards and Risks ESS 315/POE 313 Volcanism and Magma Properties of Magma -composition -dissolved gases -temperature -viscosity Eruptive.
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