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Potential applications of 1 – 5 GHz radar backscatter measurements of seasonal land snow cover

机译:季节性陆地积雪的1-5 GHz雷达反向散射测量的潜在应用

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Lower frequency microwave radar observations can help to measure the properties of snow cover on land by providing information about the soil-snow boundary condition. In this theoretical study, we examine the sensitivities of microwave radar measurements to soil and snow characteristics, and we compare a simple model with previously published data. Depending on the surface roughness, copolarized ratios or single polarization time ratios of radar backscattering may be affected only by the incidence angle and the dielectric contrast at the soil-snow boundary. These measurements can reduce the number of unknowns in any corresponding higher-frequency observations that are also affected by the lower boundary condition. The copolarized ratio is sensitive, first of all, to the snow density, which offers the possibility of measuring this parameter directly if a separate measurement of the soil temperature from a passive microwave system is also available. The thermal insulation provided by snow cover can have a powerful effect on the soil-snow boundary by altering the soil temperature and therefore changing the dielectric contrast. Because the microwave response of snow cover is so sensitive to the conditions of the underlying frozen soil, it is important for future ground truth campaigns that measure snow conditions to also collect data on the temperature, water content, and texture of the soil.
机译:低频微波雷达观测可以通过提供有关土壤-雪边界条件的信息来帮助测量陆地上积雪的性质。在这项理论研究中,我们研究了微波雷达测量对土壤和积雪特征的敏感性,并将一个简单的模型与以前发表的数据进行了比较。取决于表面粗糙度,雷达反向散射的同极化比率或单极化时间比率可能仅受土壤-雪边界处的入射角和介电对比度的影响。这些测量可以减少也受下边界条件影响的任何相应高频观测中未知数的数量。首先,共极化比对雪密度敏感,如果还可以通过无源微波系统单独测量土壤温度,则可以直接测量该参数。积雪提供的隔热层可以通过改变土壤温度并因此改变介电对比度来对土壤-雪边界产生强大的影响。由于积雪的微波响应对下层冻土的条件非常敏感,因此对于未来的地面实况调查(测量雪状况)并收集有关温度,含水量和土壤质地的数据非常重要。

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