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Effects of aerosols on clear-sky solar radiation in the ALADIN-HIRLAM NWP system

机译:气溶胶对阿拉丁 - 霍尔姆NWP系统清空太阳辐射的影响

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The direct shortwave radiative effect of aerosols under clear-sky conditions in the Aire Limitee Adaptation dynamique Developpement InterNational – High Resolution Limited Area Model (ALADIN-HIRLAM) numerical weather prediction system was investigated using three shortwave radiation schemes in diagnostic single-column experiments: the Integrated Forecast System (IFS), acraneb2 and the hlradia radiation schemes. The multi-band IFS scheme was formerly used operationally by the European Centre for Medium Range Weather Forecasts (ECMWF) whereas hlradia and acraneb2 are broadband schemes. The former is a new version of the HIRLAM radiation scheme while acraneb2 is the radiation scheme in the ALARO-1 physics package. The aim was to evaluate the strengths and weaknesses of the numerical weather prediction (NWP) system regarding aerosols and to prepare it for use of real-time aerosol information. The experiments were run with particular focus on the August?2010 Russian wildfire case. Each of the three radiation schemes accurately (within ±4?% at midday) simulates the direct shortwave aerosol effect when observed aerosol optical properties are used. When the aerosols were excluded from the simulations, errors of more than +15?% in global shortwave irradiance were found at midday, with the error reduced to +10?% when standard climatological aerosols were used. An error of ?11?% was seen at midday if only observed aerosol optical depths at 550?nm, and not observation-based spectral dependence of aerosol optical depth, single scattering albedos and asymmetry factors, were included in the simulations. This demonstrates the importance of using the correct aerosol optical properties. The dependency of the direct radiative effect of aerosols on relative humidity was tested and shown to be within ±6?% in this case. By modifying the assumptions about the shape of the IFS climatological vertical aerosol profile, the inherent uncertainties associated with assuming fixed vertical profiles were investigated. The shortwave heating rates in the boundary layer changed by up to a factor of 2 in response to the aerosol vertical distribution without changing the total aerosol optical depth. Finally, we tested the radiative transfer approximations used in the three radiation schemes for typical aerosol optical properties compared to the accurate DISORT model. These approximations are found to be accurate to within ±13?% even for large aerosol loads.
机译:在艾尔Limitee适应dynamique DEVELOPPEMENT国际晴空条件下气溶胶的直接短波辐射效应 - 使用在诊断单柱实验3个短波辐射方案高分辨率有限区域模式(ALADIN-HIRLAM)数字天气预测系统进行了研究:在集成预报系统(IFS),acraneb2和hlradia辐射方案。多频带IFS方案的前身是由欧洲中心中期天气预报(ECMWF),而hlradia业务使用和acraneb2是宽带计划。前者是HIRLAM辐射方案的新版本,而acraneb2是在阿拉罗-1物理设备的辐射方案。其目的是评估有关气溶胶数值天气预报(NWP)系统的优势和劣势,并为使用的实时气溶胶资料准备。实验是用特别侧重于八月?2010俄罗斯野火的情况下运行。观察到气溶胶光学特性被用来当每个准确三个辐射方案(±4?%以内盘中)的模拟直接短波气溶胶效应。当气溶胶是从模拟中排除,在中午被发现超过+15?%的全球短波辐射的错误,与当使用标准气候气溶胶误差降低到+10?%。的?11?%的误差在正午,看到如果仅在550?处观察到气溶胶光学深度,并没有观察为基础的气溶胶光学厚度的光谱依赖性,单次散射反照率和非对称性的因素,包括在模拟。这表明使用正确的气溶胶光学特性的重要性。对相对湿度气溶胶的直接辐射效应的依赖性进行了测试,并显示出在±6?%以内在这种情况下。通过修改有关IFS的形状的假设气候垂直气雾剂轮廓,带假设固定垂直剖面相关联的固有的不确定性的影响。在边界层中的短波加热速率,而不改变总气溶胶光学厚度变化达因数2响应于气溶胶垂直分布。最后,我们测试了在对相对于精确DISORT模型典型的气溶胶光学性质的三个辐射方案中使用辐射传输近似值。这些近似被发现是精确到±13?%,即使是大型气溶胶负荷。

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