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Improved atmospheric 3D BSDF model in earthlike exoplanet using ray-tracing based method

机译:基于射线跟踪的方法改进了地球般的外延的大气3D BSDF模型

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The studies on planetary radiative transfer computation have become important elements to disk-averaged spectral characterization of potential exoplanets. In this paper, we report an improved ray-tracing based atmospheric simulation model as a part of 3-D earth-like planet model with 3 principle sub-components i.e. land, sea and atmosphere. Any changes in ray paths and their characteristics such as radiative power and direction are computed as they experience reflection, refraction, transmission, absorption and scattering. Improved atmospheric BSDF algorithms uses Q.Liu's combined Rayleigh and aerosol Henrey-Greenstein scattering phase function. The input cloud-free atmosphere model consists of 48 layers with vertical absorption profiles and a scattering layer with their input characteristics using the GIOVANNI database. Total Solar Irradiance data are obtained from Solar Radiation and Climate Experiment (SORCE) mission. Using aerosol scattering computation, we first tested the atmospheric scattering effects with imaging simulation with HRIV, EPOXI. Then we examined the computational validity of atmospheric model with the measurements of global, direct and diffuse radiation taken from NREL(National Renewable Energy Laboratory)s pyranometers and pyrheliometers on a ground station for cases of single incident angle and for simultaneous multiple incident angles of the solar beam.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:行星辐射转移计算的研究已成为潜在的外延网的盘平均光谱表征的重要元素。在本文中,我们报告了一种基于射线跟踪的大气模拟模型,作为3-D接地的行星模型的一部分,具有3个原理子组分I.。土地,海洋和大气。在经历反射,折射,传动,吸收和散射时,计算光线路径及其特性的任何变化,例如辐射功率和方向。改进的大气BSDF算法使用Q.Liu的瑞利和气溶胶Henrey-Greenstein散射相位功能。输入无云大气模型由具有垂直吸收曲线的48层和使用Giovanni数据库的输入特征组成48层。总太阳辐照度数据从太阳辐射和气候实验(Sorce)任务中获得。使用气溶胶散射计算,首先用HRIV,EPOXI进行成像模拟测试大气散射效果。然后,我们研究了大气模型的计算有效性,从NRER(国家可再生能源实验室)的Pyranometers和地面站上的颤动仪的全球,直接和漫射辐射进行了测量,以便单一入射角和同时发出多个入射角太阳梁。©(2012)照片光学仪表工程师(SPIE)的版权协会。仅供个人使用的摘要下载。

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