Laboratory Testing of a Flexible Boom for Ice Management

Author:

Lo̸set S.1,Timco G. W.2

Affiliation:

1. SINTEF Norwegian Hydrotechnical Laboratory, Trondheim, Norway

2. National Research Council of Canada, Ottawa, Ontario, Canada

Abstract

Combatting oil spills in the Arctic is a major challenge. Drilling or producing oil or gas in the marginal ice zone (MIZ) may allow booms to be deployed upstream of an offshore structure to clear the water of ice, thereby enabling conventional oil spill countermeasures to be used. Such a boom would be kept in place by two ice-going service vessels or by moored buoys. SINTEF NHL and NRC have performed a number of small-scale tests with a flexible boom in the NRC ice basin in Ottawa. The purpose of the tests was to measure the effectiveness of using a flexible boom for collecting ice, and to determine the loads associated with collecting the ice. In the tests, various boom configurations were towed against a broken ice field consisting of ice pieces typically 50–100 mm across and 30 mm thick. The ice concentration was usually 10/10, but it was reduced to 8/10 and 5/10 for two tests. The boom was towed at speeds of 20 and 50 mm-s−1. Both the width of the boom and the slackness of the boom were varied over reasonable ranges. Two six-component dynamometers were used to support the boom. Thus, the force components on each end of the boom were measured. Further, two video cameras were used to record the effectiveness of each boom configuration. In this paper, the full results of this test program are presented and the application of the test results to the full-scale situation are discussed. The tests show that, under certain conditions, the use of boom is feasible for ice management in oil-contaminated water.

Publisher

ASME International

Subject

Mechanical Engineering,Ocean Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Model tests of an icebreaking tanker in broken ice;International Journal of Naval Architecture and Ocean Engineering;2019-01

2. Model tests of iceberg towing;Cold Regions Science and Technology;2010-04

3. Model tests of a submerged turret loading concept in level ice, broken ice and pressure ridges;Cold Regions Science and Technology;1998-02

4. Discrete element modelling of a broken ice field — Part II: simulation of ice loads on a boom;Cold Regions Science and Technology;1994-06

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