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Earth-Atmosphere radiative transfer in DART model

机译:飞镖模型中的地球大气辐射转移

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DART (Discrete Anisotropic Radiative Transfer) simulates the 3D radiative transfer (R.T.) in the Earth-Atmosphere system. Earth scenes are natural and urban landscapes with topography. DART works in the optical domain, from the ultra-violet up to the thermal infrared domain. Its products are spectral remote sensing images, spectra and 3D radiative budget. A major goal of the DART model is to provide accurate simulations with reasonable computation time. This implies an R.T. accurate modeling in the Earth scene and the atmosphere, with an accurate “Earth scene - Atmosphere” coupling. Recently, the atmosphere R.T. was greatly improved in terms of accuracy and flexibility. Its algorithm relies on a specific atmosphere grid with the use of atmosphere transfer functions for decreasing computation time. Its accuracy is improved. Compared to ModTran, the mean relative error decreased from 6.5% to 1.3%.
机译:DART(离散各向异性辐射转移)模拟地球大气系统中的3D辐射转移(R.T.)。地球场景是自然和城市风景的地形。 Dart在光学域中工作,从超紫色到热红外域。其产品是光谱遥感图像,光谱和3D辐射预算。 DART模型的主要目标是提供具有合理计算时间的准确模拟。这意味着一个r.t.在地球场景和大气中的准确建模,具有精确的“地球场景 - 大气”耦合。最近,大气层R.T.在准确性和灵活性方面得到了极大的改善。其算法依赖于使用大气传递函数来降低计算时间的特定气氛网格。它的准确性得到改善。与MODTRAN相比,平均相对误差从6.5%降至1.3%。

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