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References
Arya SPS (1973) Contribution of form drag on pressure ridges to the air stress on Arctic ice.
J Geophys Res 78(30):7092
7099
Arya SPS (1975) A drag partitioning theory for determining the large-scale roughness parameter
and wind stress on the Arctic pack ice. J Geophys Res 80(24):3447-
-
3454
Birnbaum G, L ü pkes C (2002) A new parameterization of surface drag in the marginal sea ice
zone. Tellus 54A:107 - 123
Davis N, Wadhams P (1996) A statistical analysis of Arctic pressure ridge morphology. J Geophys
Res 100:10915 - 10925
Garbrecht T, L ü pkes C, Hartman J, Wolf M (2002) Atmospheric drag coef cients over sea ice
validation of a parameterization concept. Tellus 54(2):205 - 219
Haas C (2004) EM ice thickness measurements during GreenICE 2004 field campaign. Tech Rep
EU project GreenICE (EVK2-2001-00280), Alfred Wegener Institute, Bremerhaven
Haas C, Lobach J, Hendricks S, Rabenstein L, Pfaf
-
ing A (2009) Helicopter-borne measurements
of sea ice thickness, using a small and lightweight, digital EM system. J Appl Geophys
67:234
fl
241
Hibler WD III (1972) Removal of aircraft altitude variation from laser profiles of the Arctic pack.
J Geophys Res 77(36):7190
-
7195
Hibler WD III (1975) Characterization of cold-regions terrain using airborne laser pro lometry.
J Geophys Res 77(36):7190
-
7195
Kovacs A, Holladay J, Bergeron C Jr (1995) The footprint altitude ratio for helicopter
electromagnetic sounding of sea-ice thickness: comparison of theoretical and field estimates.
Geophysics 60(2):374 - 380. doi: 10.1190/1.1443773
Lu P, Li Z, Cheng B, Lepp ä ranta M (2011) A parameterization of the ice-ocean drag coef cient.
J Geophys Res 116:C07019
L ü pkes C, Birnbaum G (2005) Surface drag in the Arctic marginal sea-ice zone: a comparison of
different parameterisation concepts. Bound-Layer Meteorol 117:179 - 211. doi: 10.1007/s10546-
005-1445-8
L ü pkes C, Gryanic VM, Hartmann J, Andreas EL (2012) A parameterization, based on sea ice
morphology, of the neutral atmospheric drag coefficients for weather prediction and climate
models. J Geophys Res 117:D13112
-
L
sel A, Birnbaum G, Kaleschke L (2013) Effects of sea ice morphology
during Arctic summer on atmospheric drag coefficients used in climate models. Geophys Res
Lett doi: 10.1029/2012GL054354
Martin T (2007) Arctic sea ice dynamics: drift and ridging in numerical models and observations.
Ber Polarforsch Meeresforsch 563 (PhD thesis, ISSN 1618-3193)
Pite HD, Topham DR, Hardenberg JV (1995) Laboratory measurements of the drag force on a
family of two-dimensional ice keel models in a two-layer
ü
pkes C, Gryanic V, R
ö
fl
ow. J Phys Oceanogr 25(12):3008
-
3031
Rabe B, Karcher M, Schauer U, Toole JM, Krish eld RA, Pisarev S, Kauker F, Gerdes R, Kikuchi
T (2011) An assessment of Arctic Ocean freshwater content changes from the 1990s to the
2006 - 2008 period. Deep Sea Res Part I: Oceanogr Res Pap 58(2):173 - 185
Rabenstein L, Hendricks S, Martin T, Pfaffhuber A, Haas C (2010) Thickness and surface-
properties of different sea-ice regimes within the Arctic Trans Polar Drift: data from summers
2001, 2004 and 2007. J Geophys Res 115. doi: 10.1029/2009JC005846
Redi J, Pfaffling A, Vrbancich M (2006) Airborne electromagnetic footprints in 1D earths.
Geophysics 71:G63
G72
Steele M, Morison JH, Untersteiner N (1989) The partition of air-ice-ocean momentum exchange
as a function of ice concentration,
-
12750
Steiner N (2000) Introduction of variable drag coefficients into sea-ice models. Ann Glaciol
33:181
fl
floe size, and draft. J Geophys Res 94(C9):12739
-
186
-
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