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Aerosol extinction models based on measurements at two sites in Sweden

机译:基于瑞典两个地点的气溶胶消光模型

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Two aerosol extinction models have been developed using statistical analysis of long-term optical transmission measurements in Sweden performed at two locations from July 1977 to June 1982. The aerosol volume extinction coefficient for infrared (IR) radiation is calculated by the models with visibility, temperature, and air pressure as input parameters. As in the MODTRAN model, the IR extinction coefficient is proportional to the coefficient at 550 nm, which depends on the visibility. In the new models, the wavelength dependence of the extinction also depends on the visibility. The models predict significantly higher attenuation in the IR than does the Rural aerosol model from MODTRAN, which is commonly used. Comparison with the Maritime model shows that the new models predict lower extinction values in the 3-5 (mu)m region and higher values in the 8-12 (mu)m region. The uncertainties in terms of variance levels are calculated by the models. The properties of aerosols, and thereby the extinction coefficient, are partly correlated to local meteorological parameters, which enables the calculation of a mean predicted value. A substantial part of the variation is, however, caused by conditions in the source area and along the trajectory path of the aerosols. They are not correlated to the local meteorological parameters and therefore cause the variance in the models.
机译:通过对1977年7月至1982年6月在两个地点在瑞典进行的长期光学透射测量进行统计分析,开发出了两种气溶胶消光模型。红外光的气溶胶消光系数由具有可见度,温度的模型计算得出,并将气压作为输入参数。与MODTRAN模型一样,IR消光系数与550 nm处的系数成比例,这取决于可见度。在新模型中,消光的波长依赖性还取决于可见度。与通常使用的MODTRAN的Rural气溶胶模型相比,该模型预测IR的衰减明显更高。与海事模型的比较表明,新模型预测了3-5μm区域的灭绝值较低,而8-12μm区域的灭绝值较高。由模型计算方差水平的不确定性。气溶胶的性质以及消光系数与局部气象参数部分相关,从而可以计算平均预测值。然而,变化的很大一部分是由源区域中的条件以及沿气溶胶的轨迹路径造成的。它们与当地的气象参数不相关,因此导致模型中的差异。

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