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Relating microwave backscatter azimuth modulation to surface properties of the Greenland ice sheet

机译:将微波背散射方位角调制与格陵兰冰盖的表面特性相关

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摘要

Azimuth dependence of a normalized radar cross-section (σ°) over the Greenland ice sheet is modeled with a simple surface scattering model. The model assumes that azimuth anisotropy in surface roughness at scales of 3-300 m is the primary mechanism driving the modulation. To evaluate the contribution of azimuth anisotropy in surface roughness to the radar backscatter, the model is compared to models based on isotropic surface roughness. The models are inverted to estimate snow surface properties using σ° measurements from the C-band European Remote-sensing Satellite advanced microwave instrument in scatterometer mode. Results indicate that the largest mesoscale rms surface slopes are found in the lower portions of the dry snow zone. Estimates of the preferential direction in surface roughness are highly correlated with katabatic wind fields over Greenland, which is consistent with wind-formed sastrugi as the dominant mechanism causing azimuth modulation of σ°. The maximum improvement of the azimuth modulation surface model compared to its isotropic counterparts occurs in the lower regions of the dry snow zone where the azimuth variability of σ° is the largest. In regions with azimuth modulation over 1 dB, the mean root-mean-square error estimate of the azimuth-dependent surface scattering model is 0.46 dB compared with 0.70 dB for similar models using isotropic roughness.
机译:标准化雷达横截面(σ°)的方位角依赖于格陵兰冰片上的模型,用简单的表面散射模型建模。该模型假设3-300米刻度的表面粗糙度中的方位角各向异性是驱动调制的主要机制。为了评估方位角各向异性在表面粗糙度对雷达反向散射的贡献,将模型与基于各向同性表面粗糙度的模型进行比较。使用Σ°从散射计模式下的C波段欧洲遥感卫星高级微波仪器倒置模型以估计雪面性能。结果表明,在干雪区的下部,最大的Mescleale rms表面斜面被发现。表面粗糙度的优先方向的估计与格陵兰岛的Katabatic风电场高度相关,这与风化的Sastrugi一致,作为导致Σ°的方位角调制的主动机制。与其各向同性对应物相比,方位调制表面模型的最大改善发生在干燥雪地区的下部区域中,其中方位为σ°的变化最大。在具有超过1 dB的方位调制的区域中,与使用各向同性粗糙度的类似模型相比,方位依赖性表面散射模型的平均根均方误差估计为0.46dB。

著录项

  • 来源
    《Journal of Glaciology》 |2006年第177期|共10页
  • 作者

    Ashcraft Ivan S; Long David G;

  • 作者单位

    Microwave Earth Remote Sensing Laboratory Brigham Young University 459 Clyde Building Provo Utah 84602 USA;

    Microwave Earth Remote Sensing Laboratory Brigham Young University 459 Clyde Building Provo Utah 84602 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 冰川;
  • 关键词

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