What are the Major Bottlenecks in the Understanding of the Freshwater-atmosphere Interactions ?
Abstract:
The influence of energy and mass fluxes from lakes and other water bodies on atmospheric circulation and climate may be considered as a three-step chain of processes. First, coupled thermo-, hydrodynamics and biogeochemistry of “lake-sediments” system produces energy source/sink and a source of greenhouse gases for the atmosphere. Second, the structure and dynamics of Atmospheric Boundary-Layer (ABL) creates conditions for the rate of energy and mass transfer between the hydrologically heterogeneous surface and the atmosphere. Finally, the mesoscale dynamics of atmosphere is likely to cause upscale propagation of energy and tracers emitted from the heterogeneous surface towards synoptic scales. The interaction of these scales is still poorly understood, and modelling approach involving high resolution spatial grids and process-based formulations can give much insight in the problem and bring a new knowledge of the physical mechanisms involved.
The crucial questions are the following: What are the ultimate processes determining the gas exchange between lakes and rivers and the atmosphere? What are the site specific factors and do small lakes differ from large lakes? To what extent the gas exchange on rivers is similar to lakes? How much information we can deduce from flux measurements above the surface and what is the crucial information required from the water-side? What are the major features and how to assess multiscale gas and energy transfer in the ABL over hydrologically heterogeneous land?
