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Feasibility of retrieving dust properties and total column water vapor from solar spectra measured using a lander camera on Mars

机译:使用火星上的着陆相机测量太阳光谱中的粉尘特性和总柱水蒸气的可行性

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Dust and water vapor are important constituents in the Martian atmosphere, exerting significant influence on the heat balance of the atmosphere and surface. We have developed a method to retrieve optical and physical properties of Martian dust from spectral intensities of direct and scattered solar radiation to be measured using a multi-wavelength environmental camera onboard a Mars lander. Martian dust is assumed to be composed of silicate-like substrate and hematite-like inclusion, having spheroidal shape with a monomodal gamma size distribution. Error analysis based on simulated data reveals that appropriate combinations of three bands centered at 450, 550, and 675?nm wavelengths and 4 scattering angles of 3°, 10°, 50°, and 120° lead to good retrieval of four dust parameters, namely, aerosol optical depth, effective radius and variance of size distribution, and volume mixing ratio of hematite. Retrieval error increases when some of the observational parameters such as color ratio or aureole are omitted from the retrieval. Also, the capability of retrieving total column water vapor is examined through observations of direct and scattered solar radiation intensities at 925, 935, and 972?nm. The simulation and error analysis presented here will be useful for designing an environmental camera that can elucidate the dust and water vapor properties in a future Mars lander mission.
机译:尘埃和水蒸气是火星大气中的重要成分,对大气和地表的热平衡产生重大影响。我们已经开发出一种方法,可以通过使用火星着陆器上的多波长环境摄像机测量的直接和散射太阳辐射的光谱强度来检索火星尘埃的光学和物理特性。假定火星尘埃由类硅酸盐基质和类赤铁矿包裹体组成,呈球形,具有单峰伽玛分布。根据模拟数据进行的误差分析表明,以450、550和675nm波长为中心的三个波段和3°,10°,50°和120°的4个散射角的适当组合可以很好地检索四个粉尘参数,即气溶胶的光学深度,有效半径和尺寸分布的变化以及赤铁矿的体积混合比。当某些观测参数(例如色比或金黄色)从检索中省略时,检索误差会增加。另外,通过观察在925、935和972nm处的直接和散射太阳辐射强度,可以检查出回收总塔水蒸气的能力。此处提供的仿真和错误分析将对设计环保的摄像机很有用,该摄像机可以在未来的火星着陆任务中阐明灰尘和水蒸气的性质。

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