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Improved Sea Ice Fraction Characterization for L-Band Observations by the Aquarius Radiometers

机译:水瓶座辐射计对L波段观测的改进的海冰分数表征

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Radiometers operating at L-band (1.4 GHz) are used to retrieve sea surface salinity over ice-free oceans and have been used recently to study the cryosphere. One hindrance of their use in the high latitudes is the preponderance of mixed scenes, where seawater and sea ice are both present in the sensor’s field of view (FOV). Accurately characterizing the scene is crucial for oceanographic and cryospheric applications. To that end, a sea ice fraction model, composed of passive microwave sea ice concentration retrievals and an instrument simulator that integrates radiative power coming from all around the antenna, is used. We investigate the model currently used operationally to derive the ice fraction affecting the Aquarius observations and show that it can be significantly improved. On the one hand, the current model tends to overestimate sea ice fraction in the marginal ice zone where observations are used for salinity retrievals. On the other hand, the current model underestimates ice fraction within the ice pack where observations are used to derive sea ice properties. For the northern hemisphere, we also find evidence of the sea ice type impact on L-band radiometric observations. We present a model to derive sea ice fractions that are in better agreement with Aquarius radiometric observations using the Advanced Microwave Scanning Radiometer 2 Bootstrap algorithm for sea ice concentration and using high-resolution integration over the sensor’s FOV.
机译:在L波段(1.4 GHz)下工作的辐射计用于在无冰的海洋上获取海面盐度,最近已用于研究冰冻圈。在高纬度地区使用它们的一个障碍是混合场景的优势,在该场景中,传感器视场(FOV)中都存在海水和海冰。对于海洋和冰冻圈应用而言,准确地描绘场景至关重要。为此,使用了一个海冰分数模型,该模型由无源微波海冰浓度检索和集成了天线周围辐射功率的仪器模拟器组成。我们调查了当前可用于推导影响水瓶座观测数据的冰分数的模型,并表明该模型可以得到显着改善。一方面,当前的模型倾向于高估边缘冰区中的海冰比例,在该地区中,观测值用于盐度的反演。另一方面,当前模型低估了冰袋中的冰含量,在冰块中,观测值用于得出海冰的性质。对于北半球,我们还发现了海冰类型对L波段辐射测量观测的影响的证据。我们使用高级微波扫描辐射计2引导程序算法对海冰浓度进行分析,并在传感器的FOV上使用高分辨率积分,从而得出一个模型,以得出与Aquarius辐射测量观测结果更为吻合的海冰分数。

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