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首页> 外文期刊>Journal of neurosurgical sciences >Utilizing CryoSat-2 sea ice thickness to initialize a coupled ice-ocean modeling system
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Utilizing CryoSat-2 sea ice thickness to initialize a coupled ice-ocean modeling system

机译:利用低温-2海冰厚度初始化耦合的冰海洋建模系统

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Two CryoSat-2 sea ice thickness products derived with independent algorithms are used to initialize a coupled ice-ocean modeling system in which a series of reanalysis studies are performed for the period of March 15, 2014 September 30, 2015. Comparisons against moored upward looking sonar, drifting ice mass balance buoy, and NASA Operation IceBridge ice thickness data show that the modeling system exhibits greatly reduced bias using the satellite-derived ice thickness data versus the operational model run without these data. The model initialized with CryoSat-2 ice thickness exhibits skill in simulating ice thickness from the initial period to up to 6 months. We find that the largest improvements in ice thickness occur over multi-year ice. Based on the data periods examined here, we find that for the 18-month study period, when compared with upward looking sonar measurements, the CryoSat-2 reanalyses show significant improvement in bias (0.47-0.75) and RMSE (0.89-1.04) versus the control run without these data (1.44 and 1.60, respectively). An ice drift comparison reveals little change in ice velocity statistics for the Pan Arctic region; however some improvement is seen during the summer/autumn months in 2014 for the Bering/Beaufort/Chukchi and Greenland/Norwegian Seas. These promising results suggest that such a technique should be used to reinitialize operational sea ice modeling systems. Published by Elsevier Ltd on behalf of COSPAR.
机译:使用独立算法的两个低温-2海冰厚度产品用于初始化耦合的冰海洋建模系统,其中在2015年9月30日的2014年3月15日进行了一系列重新分析研究。对停泊的比较看起来声纳,漂流冰质量平衡浮标和NASA操作冰桥冰厚度数据表明,使用卫星衍生的冰厚度数据与操作模型运行而没有这些数据,建模系统大大降低了偏差。用低温冰厚度初始化的模型展示了将冰厚度从初始期间模拟到长达6个月的技能。我们发现,冰厚度的最大改善发生在多年冰上。基于在此检查的数据期间,我们发现,对于18个月的研究期间,与向上看的声纳测量相比,低温-2重新达到偏差(0.47-0.75)和RMSE(0.89-1.04)显着改善控制在没有这些数据的情况下运行(分别为1.44和1.60)。冰漂移比较揭示了潘北极地区冰速度统计的几乎没有变化;然而,2014年夏季/秋季的几个月内看到了一些改善,适用于Bering / Beaufort / Chukchi和格陵兰/挪威海域。这些有希望的结果表明,这种技术应用于重新初始化运营海冰建模系统。由elsevier有限公司代表Cospar发布。

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