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首页> 外文期刊>Quarterly Journal of the Royal Meteorological Society >Short-wave and long-wave radiative properties of Saharan dust aerosol. (Special Issue: Geostationary earth radiation budget intercomparison of longwave and shortwave radiation (GERBILS).)
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Short-wave and long-wave radiative properties of Saharan dust aerosol. (Special Issue: Geostationary earth radiation budget intercomparison of longwave and shortwave radiation (GERBILS).)

机译:撒哈拉粉尘气溶胶的短波和长波辐射特性。 (特刊:长波辐射和短波辐射的地球静止地球辐射预算比较(GERBILS)。)

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摘要

The radiative properties of mineral dust aerosol during the GERB Intercomparison of Long-wave and Short-wave (GERBILS) are presented. GERBILS consisted of aircraft flights over land areas between Mauritania and Niger during June 2007. During one case of large aerosol optical depth (AOD=1.0 at 0.55 micro m), a short-wave spectrometer measured sky radiances versus scattering angle that are compared to modelled data. The modelling used phase functions of spheres, spheroids and irregular-shaped particles using T-matrix and ray-tracing methods. Irregular particles provided the most satisfactory solution. In another case of full short-wave and long-wave radiative closure, measurements and modelled clear sky conditions allowed calculation of the direct radiative effect (DRE) at high and low level. The modelled AOD (0.92) required to simulate the measured spectral irradiances agrees with the aircraft AOD (0.79) within measurement uncertainty. The simulated irradiances are less sensitive to particle shape than radiances. However, it is shown through modelling of the surface and top-of-atmosphere (TOA) DRE over all daylight hours that significant differences exist at TOA due to variation in the asymmetry parameter. The TOA short-wave diurnally averaged DRE was modelled as between 0 and -20 W m-2 depending on particle shape. A long-wave interferometer measured downwelling and upwelling radiances to derive surface emissivity across the window region. Measured nadir brightness temperatures from high level show signature of dust. A drop in brightness temperature of 14 K was determined using modelled pristine-sky spectra. The modelled outgoing long-wave DRE due to dust from this case was +14 W m-2 averaged over 24 h, or +17 W m-2 per unit AOD. Modelling studies illustrate the sensitivity to aerosol refractive index and size distribution for both short-wave and long-wave DREs. Considering the full spectrum, a refractive index dataset from the literature has been selected that best represents the Saharan dust encountered during GERBILS.
机译:介绍了长波和短波GERB比对过程中矿物粉尘气溶胶的辐射特性。 GERBILS由飞机飞行于2007年6月在毛里塔尼亚和尼日尔之间的陆地区域组成。在一个大的气溶胶光学深度(0.55微米处的AOD = 1.0)案例中,一台短波光谱仪测量了天空辐射度与散射角的关系,并与模型进行了比较。数据。该建模使用T矩阵和射线追踪方法,使用了球形,椭球形和不规则形状的粒子的相函数。不规则颗粒提供了最令人满意的解决方案。在完全短波和长波辐射封闭的另一种情况下,通过测量和建模的晴朗天空条件,可以计算出高低水平的直接辐射效应(DRE)。在测量不确定性范围内,模拟测得的光谱辐照度所需的模型化AOD(0.92)与飞机的AOD(0.79)相符。模拟的辐照度对粒子形状的敏感性低于辐照度。但是,通过对所有白天的表面和大气顶(TOA)DRE进行建模显示,由于不对称参数的变化,TOA上存在显着差异。根据颗粒形状,将TOA短波日均DRE建模为0至-20 W m -2 。一台长波干涉仪测量了下降流和上升流的辐射,以得出整个窗口区域的表面发射率。从高水平测得的最低点亮度温度显示出灰尘的痕迹。使用建模的原始天空光谱确定亮度温度下降了14K。由于这种情况下的灰尘,建模的输出长波DRE在24小时内平均为+14 W m -2 ,或每单位AOD +17 W m -2 。建模研究说明了短波和长波DRE对气溶胶折射率和尺寸分布的敏感性。考虑到整个光谱,已从文献中选择了最能代表GERBILS期间遇到的撒哈拉尘埃的折射率数据集。

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