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MOPSMAP v1.0: a versatile tool for the modeling of aerosol optical properties

机译:MOPSMAP v1.0:用于气溶胶光学性质的建模的多功能工具

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The spatiotemporal distribution and characterization of aerosol particles are usually determined by remote-sensing and optical in situ measurements. These measurements are indirect with respect to microphysical properties, and thus inversion techniques are required to determine the aerosol microphysics. Scattering theory provides the link between microphysical and optical properties; it is not only needed for such inversions but also for radiative budget calculations and climate modeling. However, optical modeling can be very time-consuming, in particular if nonspherical particles or complex ensembles are involved. In this paper we present the MOPSMAP package (Modeled optical properties of ensembles of aerosol particles), which is computationally fast for optical modeling even in the case of complex aerosols. The package consists of a data set of pre-calculated optical properties of single aerosol particles, a Fortran program to calculate the properties of user-defined aerosol ensembles, and a user-friendly web interface for online calculations. Spheres, spheroids, and a small set of irregular particle shapes are considered over a wide range of sizes and refractive indices. MOPSMAP provides the fundamental optical properties assuming random particle orientation, including the scattering matrix for the selected wavelengths. Moreover, the output includes tables of frequently used properties such as the single-scattering albedo, the asymmetry parameter, or the lidar ratio. To demonstrate the wide range of possible MOPSMAP applications, a selection of examples is presented, e.g., dealing with hygroscopic growth, mixtures of absorbing and non-absorbing particles, the relevance of the size equivalence in the case of nonspherical particles, and the variability in volcanic ash microphysics. The web interface is designed to be intuitive for expert and nonexpert users. To support users a large set of default settings is available, e.g., several wavelength-dependent refractive indices, climatologically representative size distributions, and a parameterization of hygroscopic growth. Calculations are possible for single wavelengths or user-defined sets (e.g., of specific remote-sensing application). For expert users more options for the microphysics are available. Plots for immediate visualization of the results are shown. The complete output can be downloaded for further applications. All input parameters and results are stored in the user's personal folder so that calculations can easily be reproduced. The web interface is provided at https://mopsmap.net (last access: 9 July 2018) and the Fortran program including the data set is freely available for offline calculations, e.g., when large numbers of different runs for sensitivity studies are to be made.
机译:气溶胶颗粒的时空分布和表征通常通过遥感和光学原位测量来确定。这些测量相对于微神科性质是间接的,因此需要反转技术来确定气溶胶微生物。散射理论提供微专业和光学性质之间的联系;不仅需要这种反转,而且还需要用于辐射预算计算和气候建模。然而,光学建模可以非常耗时,特别是如果涉及非球形颗粒或复杂的集合。在本文中,我们介绍了MOPSMAP包(气溶胶颗粒的集合的建模光学性质),即使在复杂气溶胶的情况下,即使在复杂气溶胶的情况下也能够快速计算光学建模。该包由单个气溶胶粒子的预先计算的光学属性的数据集,用于计算用户定义的Aerosol集合的属性以及用于在线计算的用户友好的Web界面。球形,球状体和一小组不规则颗粒形状被认为是广泛的尺寸和折射率。摩托地图提供假设随机粒子取向的基本光学特性,包括所选波长的散射矩阵。此外,输出包括常用性质的表,例如单散射反玻璃,不对称参数或激光雷达比。为了展示各种可能的摩肌映射应用,提出了一种实施例,例如,处理吸湿生长,吸收和非吸收颗粒的混合物,在非球颗粒的情况下尺寸等效的尺寸等效的相关性,以及火山灰微物质理。 Web界面旨在直观地对专家和非扩张用户进行直观。为了支持用户,可以使用大量默认设置,例如,几个波长依赖性折射率,气候代表性尺寸分布以及吸湿生长的参数化。单波长或用户定义的集合(例如,特定远程传感应用程序)的计算是可能的。对于专家用户,可以使用MicrophySics的更多选项。显示了立即可视化结果的图。可以为进一步的应用程序下载完整的输出。所有输入参数和结果都存储在用户的个人文件夹中,以便可以轻松再现计算。 Web界面在https://mopsmap.net提供(上次访问:2018年7月9日)和包括数据集的FORTRAN程序可用于离线计算,例如,当要进行大量不同的敏感性研究时制作。

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