Source-receptor matrix calculation with a Source-receptor matrix calculation with a backward mode
International audienceThe possibility to calculate linear-source receptor relationships for the transport of atmospheric trace substances with a Lagrangian particle dispersion model (LPDM) running in backward mode is shown and presented with many tests ...
Frank, A., Seibert, P.
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Holocene climate change in southern Oman deciphered by speleothem records and climate model simulations. [PDF]
Tian Y +13 more
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Land-atmosphere feedbacks contribute to crop failure in global rainfed breadbaskets. [PDF]
Li H +5 more
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Projected changes in atmospheric moisture transport contributions associated with climate warming in the North Atlantic. [PDF]
Fernández-Alvarez JC +5 more
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The Contribution of Transpiration to Precipitation Over African Watersheds. [PDF]
Te Wierik SA +7 more
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Both emissions and ageing altered brown carbon aerosols in the East Asian outflow. [PDF]
Zhu C +6 more
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Revised historical Northern Hemisphere black carbon emissions based on inverse modeling of ice core records. [PDF]
Eckhardt S +15 more
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Atmospheric Deposition of Local Mineral Dust Delivers Phosphorus to the Greenland Ice Sheet. [PDF]
McCutcheon J +9 more
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Atmospheric microplastic emissions from land and ocean. [PDF]
Evangelou I, Bucci S, Stohl A.
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A study on atmospheric relative dispersion using the transport model FLEXPART
Relative dispersion is a widely used measure to characterize mixing properties of atmospheric passive tracers. Numerical models allow for a large number of particles. In this thesis, the Lagrangian transport model FLEXPART has been used to generate particle trajectories.
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