...
首页> 外文期刊>Remote Sensing >Ku-, X- and C-Band Microwave Backscatter Indices from Saline Snow Covers on Arctic First-Year Sea Ice
【24h】

Ku-, X- and C-Band Microwave Backscatter Indices from Saline Snow Covers on Arctic First-Year Sea Ice

机译:北极第一年海冰上盐雪覆盖层的Ku,X和C波段微波反向散射指数

获取原文
   

获取外文期刊封面封底 >>

       

摘要

In this study, we inter-compared observed Ku-, X- and C-band microwave backscatter from saline 14 cm, 8 cm, and 4 cm snow covers on smooth first-year sea ice. A Ku-, X- and C-band surface-borne polarimetric microwave scatterometer system was used to measure fully-polarimetric backscatter from the three snow covers, near-coincident with corresponding in situ snow thermophysical measurements. The study investigated differences in co-polarized backscatter observations from the scatterometer system for all three frequencies, modeled penetration depths, utilized co-pol ratios, and introduced dual-frequency ratios to discriminate dominant polarization-dependent frequencies from these snow covers. Results demonstrate that the measured co-polarized backscatter magnitude increased with decreasing snow thickness for all three frequencies, owing to stronger gradients in snow salinity within thinner snow covers. The innovative dual-frequency ratios suggest greater sensitivity of Ku-band microwaves to snow grain size as snow thickness increases and X-band microwaves to snow salinity changes as snow thickness decreases. C-band demonstrated minimal sensitivity to changes in snow salinities. Our results demonstrate the influence of salinity associated dielectric loss, throughout all layers of the three snow covers, as the governing factor affecting microwave backscatter and penetration from all three frequencies. Our “plot-scale” observations using co-polarized backscatter, co-pol ratios and dual-frequency ratios suggest the future potential to up-scale our multi-frequency approach to a “satellite-scale” approach, towards effective development of snow geophysical and thermodynamic retrieval algorithms on smooth first-year sea ice.
机译:在这项研究中,我们比较了在光滑的第一年海冰上从14 cm,8 cm和4 cm积雪覆盖的盐水中观察到的Ku,X和C波段微波反向散射。使用Ku波段,X波段和C波段的表面传播极化微波散射仪系统测量来自三个积雪的全偏振反向散射,这与相应的原位雪热物理测量值相吻合。这项研究调查了来自散射仪系统的所有三个频率在同极化反向散射观测中的差异,模拟了穿透深度,利用了共极化比率,并引入了双频比率以从这些积雪中区分出主要的极化相关频率。结果表明,在所有三个频率上,测得的同极化后向散射强度都随着降雪厚度的增加而增加,这是由于在较薄的积雪中雪盐度的梯度较大。创新的双频比表明,随着雪厚度的增加,Ku波段微波对雪粒尺寸的敏感性更高;随着雪厚度的减小,X波段微波对雪盐度的敏感性更高。 C波段显示出对雪盐度变化的最小敏感性。我们的结果表明,与盐分相关的介电损耗在三个积雪的所有层中都具有影响力,它是影响微波反向散射和来自所有三个频率的穿透的控制因素。我们使用共极化反向散射,co-pol比和双频比进行的“图尺度”观测表明,未来的潜力是将我们的多频方法升级为“卫星尺度”方法,以有效开发雪地球物理光滑的第一年海冰的热力学检索算法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号