An experimental investigation on the strength and failure behavior of freshwater ice rubble

Shayanfar, Hamid (2018) An experimental investigation on the strength and failure behavior of freshwater ice rubble. Masters thesis, Memorial University of Newfoundland.

[img] [English] PDF - Accepted Version
Available under License - The author retains copyright ownership and moral rights in this thesis. Neither the thesis nor substantial extracts from it may be printed or otherwise reproduced without the author's permission.

Download (9MB)

Abstract

Ice ridges are common features in Arctic and sub-Arctic regions. They are large accumulations (typically 5-30m) of ice rubble formed due to compressive or shear forces in ice cover. Understanding the deformation behavior and strength of ice rubble is key to estimating ice ridge loads on offshore structures. Medium-scale punch tests were conducted at C-CORE’s Cold Room facility to measure and observe the strength and failure behavior of freshwater ice rubble. A custom-built punch box measuring 3.05m in length and 0.94m in width and height was used to perform the tests. The box walls were made from Plexiglas so that failure mechanisms could be observed. Ice rubble beams of nominal thickness 50cm were produced by placing randomly sized ice pieces into the punch box, filled with water at its freezing temperature. After a specified consolidation time and rubble confinement, the ice rubble beam was deformed by pushing a platen vertically downwards though the center of the beam until failure. In this study the effects of consolidation time, pressure confinement, sintering process and small ice block dimensions on the strength and failure behavior of freshwater ice rubble beam were investigated. Results showed that the failure behavior of the ice rubble beam is controlled by the degree of freeze bonding between the blocks.

Item Type: Thesis (Masters)
URI: http://research.library.mun.ca/id/eprint/13197
Item ID: 13197
Additional Information: Includes bibliographical references (pages 139-145).
Keywords: Ice rubble; Ridges; Freeze-bonds (FBs), Consolidation time; Pressure confinement; Sintering, Shear strength; Flexural strength
Department(s): Engineering and Applied Science, Faculty of
Date: March 2018
Date Type: Submission
Library of Congress Subject Heading: Ice mechanics

Actions (login required)

View Item View Item

Downloads

Downloads per month over the past year

View more statistics