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Evaluation of Sea Ice Motion in the Western Ross Sea Using AVHRR Imagery

机译:使用AVHRR Imagery评估西罗海海的海冰运动

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It has been shown that in regions not influenced by coastal effects, sea ice moves primarily in response to the wind. Researchers working in the Arctic have found that nearly 70% of the variance of ice motion can be explained by the geostrophic wind alone. A relationship between geostrophic wind, surface wind, and sea ice motion in the southwestern portion of the Ross Sea is examined here. Sea ice motion is obtained from applying a Maximum Cross Correlation (MCC) routine to two Advanced Very High Resolution Radiometer (AVHRR) scenes temporally separated by twenty-four hours. This motion is then compared with geostrophic and surface winds acquired from the National Centers for Environmental Prediction (NCEP) Medium Range Forecast (MRF) model, as well as Automatic Weather Station (AWS) surface winds. An attempt is made to support the results obtained by Thorndike and Colony in regions not dominated by coastal effects. It is found that in the southwestern Ross Sea, the ice motion tends to deviate from previous findings. In the coastal regions, this deviation is attributed to the strong katabatic winds flowing down from the Antarctica Plateau. In the regions away from the coast, other forces such as internal and hydrodynamic stresses may have caused the discrepancy.
机译:它已经表明,在地区不沿海的影响,海冰主要移动响应风的影响。在北极工作的研究人员发现,近70%的冰运动的方差可以通过转风独自来解释。在罗斯海西南部部分地转风,表面风,和海冰运动之间的关系在此检查。海冰运动被从施加的最大交叉相关(MCC)例程两个高级甚高分辨率辐射计通过场景24小时时间上分开而获得。该运动然后与地转比较和表面风速国家中心获取的环境预测(NCEP)中期预测(MRF)模型,以及自动气象站(AWS)的表面的风。试图以支持在不影响沿海地区为主的地区按桑代克和殖民地获得的结果。研究发现,在西南罗斯海,冰运动容易从以前的研究结果偏离。在沿海地区,这种偏差是由于从南极高原流下来的强大的下降风。在远离海岸的地区,其他部队,如内部和流体压力可能造成的差异。

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