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E. Priesack and S. Gayler Workshop Halle 18.-20.Sept. 2005 Modelling Soil-Plant-Atmosphere Interactions of the long-term experiment Bad Lauchstädt.

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Presentation on theme: "E. Priesack and S. Gayler Workshop Halle 18.-20.Sept. 2005 Modelling Soil-Plant-Atmosphere Interactions of the long-term experiment Bad Lauchstädt."— Presentation transcript:

1 E. Priesack and S. Gayler Workshop Halle 18.-20.Sept. 2005 Modelling Soil-Plant-Atmosphere Interactions of the long-term experiment Bad Lauchstädt

2 Originally Expert-N is an agro- ecosystem model which can be applied to consult farmers to optimize (N-) fertilization predict crop growth understand dynamics of agro- ecosystems avoid groundwater pollution by nitrate reduce nitrous oxide emissions

3 Rooted Zone Groundwater Unsaturated Zone leaching Lateral Flow Water Balance Precipitation Infiltration Evaporation Interception Run off Transpiration Root Water Uptake capillary rise

4 root zone groundwater unsaturated zone N-fixation organic fertiliser mineral fertiliser nitrification NH 4 +  NO 2 -  NO 3 - organic N mineralisation immobilisation N removed by harvesting NH 3 N2N2 N2ON2ONO x volatilisation denitrification NO 3 - - leaching lateral transport Nitrogen Balance N-deposition

5 Model application needs input data about basic soil parameters climatic and weather conditions land use management

6 Expert-N Datamanagement ASCII interface Expert-N Simulator system control process calculation graphical output ASCII output ASCII interface SQL interface ASCII interface External geographic data GIS ArcView SQL interface Manual data input Expert-N Database Simulation-Objects / MSWD-Library ASCII interface External data storage

7

8 Litter Manure Humus ManureSurf manure roots LitterSurf residues mineralisation added organic matter Soil Organic Matter Pools Mineralisation Module according to the model SOILN (Johnsson et al. 1987)

9 Wetter Bad Lauchstaedt (1902 – 2002)

10 Bodenhorizonte Profil 1

11 Pflanzendaten

12 Mineraldüngung

13 Organische Düngung

14 Bodenbearbeitung

15 Simulationsobjekte

16 Expert-N Model Configuration

17 Mineralisation Model Calibration

18 vegetative biomass above ground storage organs Expert-N Plant Simulation

19 Observed and simulated rTOC values as function of time

20 Mineralisation Model Parametrisation

21 Long-term Simulation (1906-2002): Yield

22 Long-term Simulation (1906-2002): relative TOC

23 Results are only very preliminary: Plant growth (potato!) and C- and N cycling needs further calibration Steps IIb and IIc were not considered Conclusions


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