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High-resolution and Monte Carlo additions to the SASKTRAN radiative transfer model

机译:SASKTRAN辐射传输模型的高分辨率和蒙特卡洛方法

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The Optical Spectrograph and InfraRed Imaging System (OSIRIS) instrument on board the Odin spacecraft has been measuring limb-scattered radiance since 2001. The vertical radiance profiles measured as the instrument nods are inverted, with the aid of the SASKTRAN radiative transfer model, to obtain vertical profiles of trace atmospheric constituents. Here we describe two newly developed modes of the SASKTRAN radiative transfer model: a high-spatial-resolution mode and a Monte Carlo mode. The high-spatial-resolution mode is a successive-orders model capable of modelling the multiply scattered radiance when the atmosphere is not spherically symmetric; the Monte Carlo mode is intended for use as a highly accurate reference model. It is shown that the two models agree in a wide variety of solar conditions to within 0.2 %. As an example case for both models, Odin-OSIRIS scans were simulated with the Monte Carlo model and retrieved using the high-resolution model. A systematic bias of up to 4 % in retrieved ozone number density between scans where the instrument is scanning up or scanning down was identified. The bias is largest when the sun is near the horizon and the solar scattering angle is far from 90A degrees. It was found that calculating the multiply scattered diffuse field at five discrete solar zenith angles is sufficient to eliminate the bias for typical Odin-OSIRIS geometries.
机译:自2001年以来,Odin航天器上的光学光谱仪和红外成像系统(OSIRIS)仪器一直在测量肢体散射辐射。在使用SASKTRAN辐射传输模型的情况下,在测量仪器点头时所测得的垂直辐射剖面已获得痕量大气成分的垂直剖面。在这里,我们描述了SASKTRAN辐射传递模型的两种最新开发的模式:高空间分辨率模式和蒙特卡洛模式。高空间分辨率模式是一种连续模型,能够在大气不是球对称的情况下模拟多重散射辐射。蒙特卡洛模式旨在用作高度精确的参考模型。结果表明,两种模型在各种太阳光条件下的误差均在0.2%以内。作为两个模型的示例案例,使用Monte Carlo模型模拟了Odin-OSIRIS扫描,并使用高分辨率模型进行了检索。在仪器向上扫描或向下扫描的两次扫描之间,系统检索到的臭氧数量密度偏差高达4%。当太阳靠近地平线且太阳散射角远离90A度时,偏差最大。已经发现,计算五个离散的太阳天顶角处的多重散射扩散场足以消除典型Odin-OSIRIS几何形状的偏差。

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