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引入拖曳系数参数化的海冰自由漂流模拟研究
引用本文:卢鹏,李志军,韩红卫.引入拖曳系数参数化的海冰自由漂流模拟研究[J].海洋学报(英文版),2016,35(1):53-59.
作者姓名:卢鹏  李志军  韩红卫
作者单位:大连理工大学, 海岸和近海工程国家重点实验室, 大连 116024,大连理工大学, 海岸和近海工程国家重点实验室, 大连 116024,大连理工大学, 海岸和近海工程国家重点实验室, 大连 116024
摘    要:Many interesting characteristics of sea ice drift depend on the atmospheric drag coefficient(C_a) and oceanic drag coefficient(C_w).Parameterizations of drag coefficients rather than constant values provide us a way to look insight into the dependence of these characteristics on sea ice conditions.In the present study,the parameterized ice drag coefficients are included into a free-drift sea ice dynamic model,and the wind factor α and the deflection angle θ between sea ice drift and wind velocity as well as the ratio of C_a to C_w are studied to investigate their dependence on the impact factors such as local drag coefficients,floe and ridge geometry.The results reveal that in an idealized steady ocean,C_a/C_w increases obviously with the increasing ice concentration for small ice floes in the marginal ice zone,while it remains at a steady level(0.2-0.25) for large floes in the central ice zone.The wind factor α increases rapidly at first and approaches a steady level of 0.018 when A is greater than 20%.And the deflection angle θ drops rapidly from an initial value of approximate 80° and decreases slowly as A is greater than20%without a steady level like α.The values of these parameters agree well with the previously reported observations in Arctic.The ridging intensity is an important parameter to determine the dominant contribution of the ratio of skin friction drag coefficient(C_s' /C_s) and the ratio of ridge form drag coefficient(C_r'/C_r) to the value of C_a/C_w,α,and θ,because of the dominance of ridge form drag for large ridging intensity and skin friction for small ridging intensity among the total drag forces.Parameterization of sea ice drag coefficients has the potential to be embedded into ice dynamic models to better account for the variability of sea ice in the transient Arctic Ocean.

关 键 词:海冰  拖曳系数  参数化  自由漂流  模拟
收稿时间:2014/11/1 0:00:00
修稿时间:2015/3/18 0:00:00

Introduction of parameterized sea ice drag coefficients into ice free-drift modeling
LU Peng,LI Zhijun and HAN Hongwei.Introduction of parameterized sea ice drag coefficients into ice free-drift modeling[J].Acta Oceanologica Sinica,2016,35(1):53-59.
Authors:LU Peng  LI Zhijun and HAN Hongwei
Institution:Laboratory of Coastal and Offshore Engineering, Dalian University of Technology, Dalian 116024, China
Abstract:Many interesting characteristics of sea ice drift depend on the atmospheric drag coefficient (C a) and oceanic drag coefficient (C w). Parameterizations of drag coefficients rather than constant values provide us a way to look insight into the dependence of these characteristics on sea ice conditions. In the present study, the parameterized ice drag coefficients are included into a free-drift sea ice dynamic model, and the wind factor α and the deflection angle θ between sea ice drift and wind velocity as well as the ratio of C a to C w are studied to investigate their dependence on the impact factors such as local drag coefficients, floe and ridge geometry. The results reveal that in an idealized steady ocean, C a/C w increases obviously with the increasing ice concentration for small ice floes in the marginal ice zone, while it remains at a steady level (0.2–0.25) for large floes in the central ice zone. The wind factor α increases rapidly at first and approaches a steady level of 0.018 when A is greater than 20%. And the deflection angle θ drops rapidly from an initial value of approximate 80° and decreases slowly as A is greater than 20% without a steady level like α. The values of these parameters agree well with the previously reported observations in Arctic. The ridging intensity is an important parameter to determine the dominant contribution of the ratio of skin friction drag coefficient (Cs’/Cs) and the ratio of ridge form drag coefficient (C r’/C r) to the value of C a/C w, α, and θ, because of the dominance of ridge form drag for large ridging intensity and skin friction for small ridging intensity among the total drag forces. Parameterization of sea ice drag coefficients has the potential to be embedded into ice dynamic models to better account for the variability of sea ice in the transient Arctic Ocean.
Keywords:sea ice  drag coefficient  parameterization  free drift  modeling
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