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首页> 外文期刊>Tellus, Series B. Chemical and Physical Meteorology >Thermal IR radiative properties of mixed mineral dust and biomass aerosol during SAMUM-2
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Thermal IR radiative properties of mixed mineral dust and biomass aerosol during SAMUM-2

机译:SAMUM-2期间混合矿物粉尘和生物质气溶胶的热红外辐射特性

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摘要

Ground-based high spectral resolution measurements of downwelling radiances from 800 to 1200 cm~(-1) were conducted between 20 January and 6 February 2008 within the scope of the SAMUM-2 field experiment. We infer the spectral signature of mixed biomass burning/mineral dust aerosols at the surface from these measurements and at top of the atmosphere from IASI observations. In a case study for a day characterized by the presence of high loads of both dust and biomass we attempt a closure with radiative transfer simulations assuming spherical particles. A detailed sensitivity analysis is performed to investigate the effect of uncertainties in the measurements ingested into the simulation on the simulated radiances. Distinct deviations between modelled and observed radiances are limited to a spectral region characterized by resonance bands in the refractive index. A comparison with results obtained during recent laboratory studies and field experiments reveals, that the deviations could be caused by the aerosol particles’ non-sphericity, although an unequivocal discrimination from measurement uncertainties is not possible. Based on radiative transfer simulations we estimate the aerosol’s direct radiative effect in the atmospheric window region to be 8 W m~(-2) at the surface and 1 W m~(-2) at top of the atmosphere.
机译:在SAMUM-2野外试验的范围内,于2008年1月20日至2月6日进行了800至1200 cm〜(-1)的下行辐射的地面高光谱分辨率测量。通过这些测量,我们可以推断出在表面的混合生物质燃烧/矿物粉尘气溶胶的光谱特征,以及从IASI的观测结果推断出大气顶部的光谱特征。在一天的案例研究中,同时存在大量灰尘和生物质,我们尝试通过假设球形颗粒的辐射传输模拟进行封闭。进行了详细的灵敏度分析,以调查摄入到模拟中的测量值中的不确定性对模拟辐射率的影响。建模辐射和观察到的辐射之间的明显偏差仅限于以折射率共振带为特征的光谱区域。与最近的实验室研究和现场实验中获得的结果进行比较后发现,偏差可能是由气溶胶颗粒的非球形性引起的,尽管不可能明确地与测量不确定性区分开。基于辐射传递模拟,我们估计气溶胶在大气窗口区域的直接辐射效应在表面为8 W m〜(-2),在大气顶部为1 W m〜(-2)。

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