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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Optimised frequency grids for infrared radiative transfer simulations in cloudy conditions
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Optimised frequency grids for infrared radiative transfer simulations in cloudy conditions

机译:为多云条件下的红外辐射传递模拟优化的频率网格

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This paper shows that radiometer channel radiances for cloudy atmospheric conditions can be simulated with an optimised frequency grid derived under clear-sky conditions. A new clear-sky optimised grid is derived for AVHRR channel 5(12μm, 833cm -1). For HIRS channel 11 (7.33μm, 1364cm -1) and AVHRR channel 5, radiative transfer simulations using an optimised frequency grid are compared with simulations using a reference grid, where the optimised grid has roughly 100-1000 times less frequencies than the full grid. The root mean square error between the optimised and the reference simulation is found to be less than 0.3K for both comparisons, with the magnitude of the bias less than 0.03K. The simulations have been carried out with the radiative transfer model Atmospheric Radiative Transfer Simulator (ARTS), version 2, using a backward Monte Carlo module for the treatment of clouds. With this module, the optimised simulations are more than 10 times faster than the reference simulations. Although the number of photons is the same, the smaller number of frequencies reduces the overhead for preparing the optical properties for each frequency. With deterministic scattering solvers, the relative decrease in runtime would be even more. The results allow for new radiative transfer applications, such as the development of new retrievals, because it becomes much quicker to carry out a large number of simulations. The conclusions are applicable to any downlooking infrared radiometer.
机译:本文表明,可以使用在晴空条件下导出的优化频率网格来模拟多云环境下的辐射计通道辐射。为AVHRR通道5(12μm,833cm -1)导出了一个新的晴空优化网格。对于HIRS通道11(7.33μm,1364cm -1)和AVHRR通道5,将使用优化频率网格的辐射传输模拟与使用参考网格的模拟进行比较,其中参考网格的频率比完整网格低大约100-1000倍。对于这两个比较,在优化和参考仿真之间的均方根误差均小于0.3K,且偏差的幅度小于0.03K。已经使用版本2的辐射传输模型大气辐射传输模拟器(ARTS)进行了仿真,使用后向蒙特卡洛模块来处理云。使用此模块,优化的仿真比参考仿真快10倍以上。尽管光子的数目相同,但是较少的频率减少了为每个频率准备光学特性的开销。使用确定性散射求解器,运行时间的相对减少会更大。结果允许进行新的辐射传输应用,例如开发新的取回物,因为它可以更快地执行大量的模拟。该结论适用于任何向下看的红外辐射计。

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