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Featured researches published by S. T. Rooney.


Marine Geology | 1989

Sedimentation beneath ice shelves — the view from ice stream B

Richard B. Alley; Donald D. Blankenship; S. T. Rooney; Charles R. Bentley

Abstract Ice-shelf development is favored by rapid flow of cold ice from outlet glaciers or ice streams into protected embayments with localized high spots. Basal melting of ice shelves is rapid near the ice front and may occur near the grounding line. Ice from outlet glaciers may contain significant englacial debris that is deposited as a dropstone diamicton in regions of basal melting. Englacial debris is sparse or absent in ice streams. Evidence from ice stream B, draining into the Ross Ice Shelf of West Antarctica, suggests that the rapid ice velocity arises from deformation of a several-meter-thick, water-saturated basal till layer that is eroding an unconformity on sediments beneath and that has deposited a “till delta” tens of meters thick and tens of kilometers long at the grounding line. Sea-level fall would cause “conveyor belt” recycling of this till delta and grounding-line advance across the Ross Sea to the edge of the continental shelf, forming an ice sheet with a low, ice-stream profile resting on a several meter-thick deforming till layer eroding an unconformity. The modern Ross Sea is characterized by a regional unconformity overlain by a diamicton of probable latest Pliocene-Pleistocene age measuring several meters to tens of meters thick. We hypothesize that this diamicton is a deformed glacial till and that the Ross Sea sediments record one or more expansions of the till-lubricated West Antarctic ice sheet to the edge of the continental shelf.


Archive | 1987

A Few Preliminary Results from the Glaciogeophysical Survey of the Interior Ross Embayment (GSIRE)

Charles R. Bentley; Sion Shabtaie; Donald D. Blankenship; Richard B. Alley; S. T. Rooney

We report here on some of the results of our first two seasons work along the Siple Coast. These results are all preliminary in nature and could be modified substantially with further analysis. Furthermore, we have selected from a much larger body of data only a few points that we believe will be of interest to this workshop.


Nature | 1986

Deformation of till beneath ice stream B, West Antarctica

Richard B. Alley; Donald D. Blankenship; Charles R. Bentley; S. T. Rooney


Journal of Geophysical Research | 1987

Till beneath ice stream B: 3. Till deformation: Evidence and implications

Richard B. Alley; Donald D. Blankenship; Charles R. Bentley; S. T. Rooney


Nature | 1986

Seismic measurements reveal a saturated porous layer beneath an active Antarctic ice stream

Donald D. Blankenship; C.R. Bentley; S. T. Rooney; Richard B. Alley


Journal of Geophysical Research | 1987

Till beneath ice stream B: 1. Properties derived from seismic travel times

Donald D. Blankenship; Charles R. Bentley; S. T. Rooney; Richard B. Alley


Journal of Geophysical Research | 1987

Till beneath ice stream B: 4. A coupled ice‐till flow model

Richard B. Alley; Donald D. Blankenship; S. T. Rooney; Charles R. Bentley


Journal of Geophysical Research | 1987

Till beneath ice stream B: 2. Structure and continuity

S. T. Rooney; Donald D. Blankenship; Richard B. Alley; Charles R. Bentley


Archive | 1987

Till beneath ice stream B

Richard B. Alley; Donald D. Blankenship; Charles R. Bentley; S. T. Rooney


Gondwana Six: Structure, Tectonics, and Geophysics | 2013

Seismic Refraction Measurements of Crustal Structure in West Antarctica

S. T. Rooney; Donald D. Blankenship; Charles R. Bentley

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Donald D. Blankenship

University of Texas at Austin

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Charles R. Bentley

University of Wisconsin-Madison

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Richard B. Alley

Pennsylvania State University

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Sion Shabtaie

University of Wisconsin-Madison

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