First-year sea ice ridges are a major concern for structures operating in the Arctic offshore and will in many cases give the design mooring load. In this paper, the response of a moored conical floater, somewhat similar to the well-known Kulluk, is studied in first-year ridges. The study is based on model tests performed at Hamburg Ship Model Basin (HSVA) in several ridges with different properties. Mooring forces and floater response, resulting from interaction with different ridges, were compared with respect to ridge properties, ridge behavior, and simulated ice management. Clearance of accumulated rubble upstream the structure was the dominating physical process in the ridge–structure interaction. Accumulation of rubble caused large mooring forces. The amount of accumulated rubble depended on the ridge cross-sectional area, thus the mooring forces increased with ridge cross-sectional area. Large mooring forces were also experienced after the ridge was passed by the structure due to difficulties with clearing of accumulated rubble.

References

1.
Løset
,
S.
,
Shkhinek
,
K.
,
Gudmestad
,
O. T.
,
Strass
,
P.
,
Michalenko
,
E.
,
Frederking
,
R.
, and
Kärnä
,
T.
,
1999
, “
Comparison of the Physical Environment of Some Arctic Seas
,”
Cold Regions Sci. Technol.
,
29
(
3
), pp.
201
214
.10.1016/S0165-232X(99)00031-2
2.
Eik
,
K.
,
2008
, “
Review of Experiences Within Ice and Iceberg Management
,”
J. Navig.
,
61
(
04
), pp.
557
572
.10.1017/S0373463308004839
3.
Løset
,
S.
,
Shkhinek
,
K. N.
,
Gudmestad
,
O. T.
, and
Høyland
,
K. V.
,
2006
,
Actions From Ice on Arctic Offshore and Coastal Structures
,
LAN, Trondheim, St. Petersburg
,
Moscow, Krasnodar
.
4.
Timco
,
G. W.
, and
Croasdale
,
K. R.
,
2006
, “
How Well can We Predict Ice Loads?
,”
Proceedings of the 18th IAHR International Symposium on Ice
,
Sapporo
,
Japan
, Aug. 28–Sept. 1, pp.
167
174
.
5.
Dalane
,
O.
,
Aksnes
,
V.
,
Løset
,
S.
, and
Aarsnes
,
J. V.
,
2009
, “
A Moored Arctic Floater in First-Year Sea Ice Ridges
,” Proceedings of the
ASME
28th International Conference on Ocean,
Offshore, and Arctic Engineering
,
Honolulu, HI
, May 31–June 5, ASME Paper No. OMAE2009-79945.10.1115/OMAE2009-79945
6.
Løset
,
S.
, and
Aarsnes
,
J. V.
,
2009
, “
Icebreaking Buoy in Arctic Waters
,”
9th International Conference and Exhibition for Oil and Gas Resources Development of the Russian Arctic and CIS Continental Shelf RAO/CIS Offshore
2009,
St. Petersburg
,
Russia
, Sept. 15–18, Vol. 1, pp 138–143.
7.
Wright
,
B.
,
2000
, “
Full Scale Experience With Stationkeeping Operations in Pack Ice
,” PERD/CHC Report No. 25-44.
8.
ISO 19906
,
2010
,
Petroleum and Natural Gas Industries-Arctic Offshore Structures
,
International Standard, International Standardization Organization
, Geneva,
Switzerland
.
9.
Repetto-Llamazares
,
A.
,
2010
, “
Review on Model Ice Ridges
,”
Proceedings of the 20th IAHR International Symposium on Ice
,
Lahti, Finland
, June 14–17.
10.
Høyland
,
K. V.
,
2002
, “
Consolidation of First-Year Sea Ice Ridges
,”
J. Geophys. Res.
,
107
(
C6
).10.1029/2000JC000526
11.
Timco
,
G. W.
, and
Burden
,
R. P.
,
1997
, “
An Analysis of the Shapes of Sea Ice Ridges
,”
Cold Regions Sci. Technol.
,
25
(
1
), pp.
65
77
.10.1016/S0165-232X(96)00017-1
12.
Leppäranta
,
M.
, and
Hakala
,
R.
,
1992
, “
The Structure and Strength of First-Year Ridges in the Baltic Sea
,”
Cold Regions Sci. Technol.
,
20
(
3
), pp.
295
311
.10.1016/0165-232X(92)90036-T
13.
Jensen
,
A.
,
Løset
,
S.
,
Høyland
,
K. V.
,
Liferov
,
P.
,
Heinonen
,
J.
,
Evers
,
K. U.
, and
Määttänen
,
M.
,
2001
, “
Physical Modeling of First-Year Ridges—Part II: Mechanical Properties
,”
Proceedings of the 16th International Conference on Port and Ocean Engineering Under Arctic Conditions
,
Ottawa, Canada
, Vol.
3
, pp.
1493
1502
.
14.
Liferov
,
P.
,
Jensen
,
A.
,
Høyland
,
K. V.
, and
Løset
,
S.
,
2002
, “
On Analysis of Punch Tests on Ice Rubble
,”
Proceedings of the 16th International Symposium on Ice
,
Dunedin, New Zealand
, Vol.
2
, pp.
101
109
.
15.
Bonnemaire
,
B.
, and
Liferov
,
P.
,
2005
, “
Ice Rubble Behaviour and Strength: Part I. Review of Testing and Interpretation of Results
,”
Cold Regions Sci. Technol.
,
41
(
2
), pp.
135
151
.10.1016/j.coldregions.2004.10.001
16.
Jensen
,
A.
,
Høyland
,
K. V.
, and
Evers
,
K. U.
,
2000
, “
Scaling and Measurements of Laboratory Made Rubble
,”
Proceedings of the 15th IAHR International Symposium on Ice
,
Gdansk, Poland
, Vol.
1
, pp.
105
112
.
17.
Sudom
,
D.
, and
Timco
,
G.
,
2013
, “
Knowledge Gaps in Sea Ice Ridge Properties
,”
Proceedings of the 22th International Conference on Port and Ocean Engineering under Arctic Conditions
,
Espoo, Finland
, June 9–13.
18.
Strub-Klein
,
L.
, and
Sudom
,
D.
,
2012
, “
A Comprehensive Analysis of the Morphology of First-Year Sea Ice Ridges
,”
Cold Regions Sci. Technol.
,
82
, pp.
94
109
.10.1016/j.coldregions.2012.05.014
19.
Sevan Marine ASA,
2009
, see http://www.sevanmarine.com
20.
Dalane
,
O.
,
Knudsen
,
F.
, and
Løset
,
S.
,
2012
, “
Nonlinear Coupled Hydrostatics of Arctic Conical Platforms
,”
ASME J. Offshore Mech. Arct. Eng.
,
134
(
2
), p.
021602
.10.1115/1.4004633
21.
Ashton
,
G. D.
, ed.,
1986
,
River and Lake Ice Engineering
,
Water Resources Publications, Book Crafters, Inc.
,
Chelsea
, MI.
22.
Evers
,
K. U.
, and
Jochmann
,
P.
,
1993
, “
An Advanced Technique to Improve the Mechanical Properties of Model Ice Developed at the HSVA Ice Tank
,”
Proceedings of the 12th International Conference on Port and Ocean Engineering under Arctic Conditions
,
Hamburg, Germany
, pp.
877
888
.
23.
Høyland
,
K. V.
,
Jensen
,
A.
,
Liferov
,
P.
,
Heinonen
,
J.
,
Evers
,
K. U.
,
Løset
,
S.
, and
Määttänen
,
M.
,
2001
, “
Physical Modeling of First-Year Ridges—Part I: Production, Consolidation and Physical Properties
,”
Proceedings of the 16th International Conference on Port and Ocean Engineering under Arctic Conditions
,
Ottawa, Canada
, Aug. 12–17, Vol.
3
, pp.
1483
1492
.
24.
Jochmann
,
P.
,
2014
, “
Best Practice in Ice Model Testing On Moored Floaters
,”
Proceedings of OTC Arctic Technology Conference
,
Houston, TX
, Paper No. OTC-24565, p.
12
.
25.
Dolgopolov
,
Y.
,
Afanasev
,
V.
,
Korenkov
,
V.
, and
Panfilov
,
D.
,
1975
, “
Effect of Hummocked Ice on Piers of Marine Hydraulic Structures
,”
Proceedings of IAHR Symposium on Ice
,
Hanover, NH
, Aug. 18–21, pp.
469
478
.
26.
Serré
,
N.
,
2011
, “
Mechanical Properties of Model Ice Ridge Keels
,”
Cold Regions Sci. Technol.
,
67
(
3
), pp.
89
106
.10.1016/j.coldregions.2011.02.007
27.
Serré
,
N.
, and
Liferov
,
P.
,
2010
, “
Loads From Ice Ridge Keels—Experimental vs. Numerical vs. Analytical
,”
Proceedings of the 20th IAHR International Symposium on Ice
,
Lahti, Finland
, June 14–17.
28.
Kärnä
,
T.
,
Chae
,
W. R.
, and
Shkhinek
,
K.
,
2001
, “
Global Loads due to First-Year Ice Ridges
,”
Proceedings of the 16th International Conference on Port and Ocean Engineering under Arctic Conditions
,
Ottawa, Canada
, Aug. 12–17, Vol.
2
, pp.
627
638
.
29.
Kärnä
,
T.
, and
Jochmann
,
P.
,
2003
, “
Field Observations on Ice Failure Modes
,”
Proceedings of the 17th International Conference on Port and Ocean Engineering under Arctic Conditions
,
Trondheim, Norway
, June 16–19, Vol.
2
, pp.
839
848
.
You do not currently have access to this content.