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首页> 外文期刊>Journal of geophysical research. Planets >Lunar equatorial surface temperatures and regolith properties from the Diviner Lunar Radiometer Experiment
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Lunar equatorial surface temperatures and regolith properties from the Diviner Lunar Radiometer Experiment

机译:来自Diviner月球辐射计实验的月球赤道表面温度和重石特征

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The Diviner Lunar Radiometer Experiment onboard the Lunar Reconnaissance Orbiter has measured solar reflectance and mid-infrared radiance globally, over four diurnal cycles, at unprecedented spatial and temporal resolution. These data are used to infer the radiative and bulk thermophysical properties of the near-surface regolith layer at all longitudes around the equator. Normal albedos are estimated from solar reflectance measurements. Normal spectral emissivities relative to the 8-m Christiansen Feature are computed from brightness temperatures and used along with albedos as inputs to a numerical thermal model. Model fits to daytime temperatures require that the albedo increase with solar incidence angle. Measured nighttime cooling is remarkably similar across longitude and major geologic units, consistent with the scarcity of rock exposures and with the widespread presence of a near-surface layer whose physical structure and thermal response are determined by pulverization through micrometeoroid impacts. Nighttime temperatures are best fit using a graded regolith model, with a ~40% increase in bulk density and an eightfold increase in thermal conductivity (adjusted for temperature) occurring within several centimeters of the surface.
机译:登月侦察轨道飞行器上的Diviner登月辐射计实验以前所未有的空间和时间分辨率,在四个昼夜周期内测量了全球的太阳反射率和中红外辐射率。这些数据用于推断赤道周围所有经度的近地表硬石层的辐射和整体热物理性质。正常反照率是根据太阳反射率测量值估算的。从亮度温度计算出相对于8-m Christiansen特征的法线光谱发射率,并将其与反照率一起用作数值热模型的输入。要适合白天温度的模型,要求反照率随太阳入射角而增加。在经度和主要地质单元上测得的夜间降温效果非常相似,这与岩石暴露的稀缺性以及近地表层的广泛存在相一致,其近地表层的物理结构和热响应是通过微流星体的撞击来确定的。夜间温度最适合使用渐层灰泥模型,其堆积密度增加约40%,表面几厘米范围内的导热系数(根据温度调整)增加八倍。

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