...
首页> 外文期刊>Geoscience and Remote Sensing Letters, IEEE >Inversion of Dielectric Properties of the Lunar Regolith Media With Temperature Profiles Using Chang'e Microwave Radiometer Observations
【24h】

Inversion of Dielectric Properties of the Lunar Regolith Media With Temperature Profiles Using Chang'e Microwave Radiometer Observations

机译:用Chang娥微波辐射计观测值反演温度条件下的月积石介质的介电性质

获取原文
获取原文并翻译 | 示例
           

摘要

As ground truth to utilize the surface temperature measurements from the Diviner Lunar IR Radiometer and the subsurface thermal properties from the Apollo heat-flow probes, we create a forward model to predict brightness temperatures (Tbs) from lunar regolith media in the microwave (MW) spectrum. These models can be then directly compared with and matched to the data from the MW radiometers flown aboard the Chang'e 1 and 2 (CE-1 and CE-2) missions. Based on an MW radiative transfer model and the least-mean-square method, the effective surface reflectivity and absorption coefficient of the lunar regolith are retrieved from multichannel MW Tbs. The effective complex dielectric constant of the lunar regolith as a function of the depth at different frequency channels is derived. Meanwhile, we find that the maximum penetration depth of the MW radiation at the Apollo 15 site ranges from about 30 cm at 37.0 GHz to 230 cm at 3.0 GHz and from 30 cm at 37.0 GHz to 560 cm at 3.0 GHz in the equatorial highlands, which are much lower than the previous results that were simply derived from FeO and $hbox{TiO}_{2}$ abundance.
机译:作为利用Diviner月球红外辐射仪的表面温度测量值和Apollo热流探测器的地下热特性的地面真理,我们创建了一个正向模型,以预测微波(MW)中月球重石介质的亮度温度(Tbs)。光谱。然后可以将这些模型直接与the娥一号和二号(CE-1和CE-2)任务中飞行的MW辐射计的数据进行比较和匹配。基于MW辐射传递模型和最小均方方法,从多通道MW Tbs中提取了月球石的有效表面反射率和吸收系数。推导出月球重石的有效复数介电常数随深度在不同频道的变化。同时,我们发现,在赤道高地,阿波罗15号站点的MW辐射的最大穿透深度在37.0 GHz时约为30厘米,在3.0 GHz时约为230厘米,在37.0 GHz时的30厘米至3.0 GHz时的560厘米,这远低于先前从FeO和 $ hbox {TiO} _ {2} $ 丰度。

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