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Directional characteristics of thermal-infrared beaming from atmosphereless planetary surfaces - a new thermophysical model

机译:无尘行星表面热红外光束定向特性 - 一种新的热物理模型

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摘要

We present a new rough-surface thermophysical model (Advanced Thermophysical Model or ATPM) that describes the observed directional thermal emission from any atmosphereless planetary surface. It explicitly incorporates partial shadowing, scattering of sunlight, self-heating and thermal–infrared beaming (re-radiation of absorbed sunlight back towards the Sun as a result of surface roughness). The model is verified by accurately reproducing ground-based directional thermal emission measurements of the lunar surface using surface properties that are consistent with the findings of the Apollo missions and roughness characterized by an rms slope of ∼32°. By considering the wide range of potential asteroid surface properties, the model implies a beaming effect that cannot be described by a simple parameter or function. It is highly dependent on the illumination and viewing angles as well as surface thermal properties and is predominantly caused by macroscopic rather than microscopic roughness. Roughness alters the effective Bond albedo and thermal inertia of the surface as well as moving the mean emission away from the surface normal. For accurate determination of surface properties from thermal–infrared observations of unresolved bodies or resolved surface elements, roughness must be explicitly modelled, preferably aided with thermal measurements at different emission angles and wavelengths.udud
机译:我们提出了一种新的粗糙表面热物理模型(高级热物理模型或ATPM),该模型描述了从任何无大气行星表面观察到的定向热辐射。它明确地包含了部分阴影,太阳光的散射,自热和热红外光束(由于表面粗糙而将吸收的太阳光重新辐射回太阳)。该模型通过使用与阿波罗任务的发现和粗糙度均方根值为〜32°的特征相一致的表面特性,准确地再现月球表面的地面定向热辐射测量值进行了验证。通过考虑潜在的小行星表面特性的广泛范围,该模型暗示了无法用简单的参数或函数描述的光束效果。它高度依赖于照明和视角以及表面热性能,并且主要是由宏观而不是微观粗糙度引起的。粗糙度会改变表面的有效Bond反照率和热惯性,并使平均发射远离表面法线。为了从未分解的物体或分解的表面元素的热红外观察中准确确定表面性质,必须对粗糙度进行显式建模,最好在不同发射角度和波长下进行热测量。

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  • 作者

    Rozitis B.; Green S. F.;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 en
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