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Brief communication: Conventional assumptions involving the speed of radar waves in snow introduce systematic underestimates to sea?ice thickness and seasonal growth rate estimates

机译:简要沟通:涉及雪中雷达波速度的常规假设引入系统的低估到海上炎症冰厚度和季节增长率估算

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Pan-Arctic sea ice thickness has been monitored over recent decades by satellite radar altimeters such as CryoSat-2, which emits Ku-band radar waves that are assumed in publicly available sea ice thickness products to penetrate overlying snow and scatter from the ice–snow interface. Here we examine two expressions for the time delay caused by slower radar wave propagation through the snow layer and related assumptions concerning the time evolution of overlying snow density. Two conventional treatments introduce systematic underestimates of up to 15cm into ice thickness estimates and up to 10cm into thermodynamic growth rate estimates over multi-year ice in winter. Correcting these biases would impact a wide variety of model projections, calibrations, validations and reanalyses.
机译:据卫星雷达高度计(如Cryosat-2)近几十年来监测泛北极海冰厚度,它发出了在公开的海冰厚度产品中假设的Ku波段雷达波,以穿透覆盖雪并从冰雪散射界面。在这里,我们检查通过雪层和相关的雪密度时间演变的雷达波传播较慢的雷达波传播引起的时间延迟的两个表达式。两种常规处理引入冬季多年冰的热力学生长率估计和高达15厘米的系统低至15厘米,进入冰厚度估计,高达10厘米。纠正这些偏差会影响各种型号预测,校准,验证和Reanalyses。

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