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- W2027833039 abstract "Mesoscale meteorological models require the parameterization of radiative transfer. In this paper a radiation scheme is presented which is found to be reasonably accurate for inclusion in a three-dimensional mesoscale model. The scheme provides atmospheric radiative heating/cooling and radiative fluxes at ground level for both clear and polluted or cloudy atmospheres. The parameterization of longwave radiation is based on the emissivity method and takes into account the spectral overlap in the 15 μm band. Shortwave radiative transfer is described by means of a new approach allowing the consideration of multiple reflections; this is found to be of particular importance in the case of a cloudy atmosphere. Approximative methods are applied to parameterize both extinction due to pollution and cloud transmission. By a proper numerical treatment the conservation of radiative fluxes is ensured and computational efficiency is achieved. Selected simulation results are used to illustrate the features of the proposed scheme and to point out its advantages compared to previous methods." @default.
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- W2027833039 date "1987-12-01" @default.
- W2027833039 modified "2023-09-27" @default.
- W2027833039 title "An efficient scheme to calculate radiative transfer in mesoscale models" @default.
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- W2027833039 doi "https://doi.org/10.1016/0266-9838(87)90033-5" @default.
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