Effusion rate controls on lava flow length and the role of heat loss¶
Harris, & Rowland. (2009). Effusion rate controls on lava flow length and the role of heat loss: a review. Studies in Volcanology: The Legacy of George Walker.
Cited by¶
1 citation across 1 artifact.
Each citation links to the sentence it supports in the citing article.
Domain-specific¶
- Geological Lava Flow
- Higher sustained discharge or better insulation predicts longer runout; greater crystallinity, heat loss, or spreading predicts thickening and arrest; confinement predicts deeper, faster channelized motion until overtopping or breakout
This sourceReviews the effusion-rate control on lava flow length and the competing role of heat loss; the confinement-and-breakout clause is not this source's subject.
- Higher sustained discharge or better insulation predicts longer runout; greater crystallinity, heat loss, or spreading predicts thickening and arrest; confinement predicts deeper, faster channelized motion until overtopping or breakout
Verification¶
This reference passed the adversarial substantiation pipeline: it was checked to exist and to support the claim it is attached to. See how references were verified.
Registry ID ref:16330b986bf1 · see in the full table