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Propagation Characteristics of Damped Traveling Wave in a One-Dimensional Marginal Sea Ice

Propagation Characteristics of Damped Traveling Wave in a One-Dimensional Marginal Sea Ice
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摘要 Based on the wave velocity potential of sea water and marginal sea ice, a modified formula about damped traveling wave is proposed. From this formula, it is obvious that the propagation characteristics of ocean wave in marginal sea ice are affected by ice thickness, temperature, salinity and ice growth rate. Attenuation coefficient approaches a limit value of 0.99 when ice thickness increases in the range of 0.5-50 m. When ice temperature increases in the range from 18 ℃ to 3 ℃, attenuation coeffi- cient slowly decreases, while it rapidly decreases when ice temperatures is above a critical ice temperature of 3 ℃. Both attenuation coefficient and wavelengths of damped traveling wave nearly increase linearly with the increase of ice salinity and ice growth rate. Based on the wave velocity potential of sea water and marginal sea ice, a modified formula about damped traveling wave is proposed. From this formula, it is obvious that the propagation characteristics of ocean wave in marginal sea ice are affected by ice thickness, temperature, salinity and ice growth rate. Attenuation coefficient approaches a limit value of 0.99 when ice thickness increases in the range of 0.5-50 m. When ice temperature increases in the range from 18 ℃ to 3 ℃, attenuation coeffi- cient slowly decreases, while it rapidly decreases when ice temperatures is above a critical ice temperature of 3 ℃. Both attenuation coefficient and wavelengths of damped traveling wave nearly increase linearly with the increase of ice salinity and ice growth rate.
出处 《Wuhan University Journal of Natural Sciences》 CAS CSCD 2015年第1期79-86,共8页 武汉大学学报(自然科学英文版)
基金 Supported by the National Natural Science Foundation of China(41276187 the Global Change Research Program of China(2015CB953901) the Startup Foundation for Introducing Talent of NUIST(20110310) Program for Innovation Research and Entrepreneurship Team in Jiangsu Province the CFOSAT Project and the Canadian Program on Energy Research and Development
关键词 marginal sea ice wave-ice interactions attenuation coefficient wave propagation marginal sea ice wave-ice interactions attenuation coefficient wave propagation
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