Organic matter / nitrogen simulations with SWAP/ANIMO

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ALTERRA Organic matter / nitrogen simulations with SWAP/ANIMO Joop Kroes & Piet Groenendijk

description

Organic matter / nitrogen simulations with SWAP/ANIMO. Joop Kroes & Piet Groenendijk. Purpose of modelling efforts. Prediction of environmental impacts of: Fertilization legislation Water management Land use Special combating measures With respect to: Nitrate concentrations in groundwater - PowerPoint PPT Presentation

Transcript of Organic matter / nitrogen simulations with SWAP/ANIMO

ALTERRA

Organic matter / nitrogen

simulations with SWAP/ANIMOJoop Kroes & Piet Groenendijk

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Purpose of modelling efforts

Prediction of environmental impacts of: Fertilization legislation Water management Land use Special combating measuresWith respect to: Nitrate concentrations in groundwater N & P transport to surface waters Soil P saturation degree Trace gas emissions (just started)

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Key EC Directives Key EC Directives Nitrates 91/676 Nitrates 91/676 Water Framework Water Framework

2000/60/EC2000/60/EC

Marine Conventions Marine Conventions (e.g. (e.g. OSPAR, HELCOMOSPAR, HELCOM, ,

Barcelona);Barcelona);

Introduction

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Time scales considered

Water Framework Directive / Nitrate Directive related

Duration: 10 – 50 year Frequency: annual estimates

Generates input to surface quality models: Duration: 1 – 10 years Frequency: daily or weekly

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Dutch assessment approach for N/P leaching

to gw/sw Characterized by shallow groundwater tables

(deltas; wetlands)

Intensive land use (agriculture, urbanisation)

Process oriented modelling approach

National and regional assessments with the same approach

Consensus between research organisations

ALTERRA National assessmentNational assessmentSTONE model chainSTONE model chain

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Plots: calculation units

soil

hydrology

crops

historical P-accumulation

management

fertilization

relation with deep groundwater

Regional appraoch

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transpiration

Saturatedzone

Plant

precipitation

soil-evaporation

Surface waters

Deep Groundwater

surface runoff

- Transport of soilwater- Macro pores

interception

Atmosphere

drainage/subsurfaceinfiltration

drainage/subsurfaceinfiltration

deep percolation/seepage

Unsaturatedzone

snow melt

Hydrological pathways

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PLANT

Gross Rainfall/Irrigation

Interception

SNOW

POND

SOIL

surfacewater

Snowfall

Nett Rainfall/Irrigation

Runon

Runoff

Soil Evaporation

Plant Evaporation

Infiltration/Exfiltration

Drainage/Infiltration

Up/downward seepage

Melt

Precipitation

Inundation

Sublimation

Flow between sub systems

ALTERRASolution soil water flow equation

• Field conditions require numerical solution• Numerical solution needs:

– water retention function (h)– hydraulic conductivity function K()

– root water extraction function S(h)– initial conditions– top and bottom boundary conditions

hSz

z

hhK

t

hhC

1

ALTERRAModelling of crop growth : Wofost sub model

Ta/Tp

LAI

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Animo model

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Transport en transformation processes as influenced byaeration, temperature, drought-stress and pH

Fertilizer Manure Cropresidues

Deposition Biol.N-fixation

Yield LeachingVolatilization Denitrification

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Fresh Org.MatterExudates

NO3

CO2

NH4

PO4

sorption

NH3

CO2

diff-precip

Diss. Org.Matter

CO2

CO2

sorption

Humus / biomass

Groundwater

Tile drains

Surface runoff

Streams and canals

Field ditches

Atmosphere

Manure and fertilizers

Crops

N2

Crop uptake

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Parameterizarion of organic matter pool

}7.4)(7.4exp{ 6.06.0

0

tY

Yt

tttt eaFRaFReaFReaFRY

Y 02.02.02

0)

18.0

2.0)1(

98.1

2()

18.0

2.01()1()

98.1

21( 1 ANIMO:

Empirical relation:

0705.01096.00673.00066.0

4767.16904.01394.00105.023

23

a

FRAnimo parameters related to empirical relation:

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cattle slurry

empirical rel.

* * * * * * * * * * * * ANIMO