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ICT tools for enhancing sustainable water management in rural environments

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(1)

FMP

(decisionRtreeRworkflow)

crop water

demand

crop

irrigation

demand

surfaceRwaterR

supply

groundwaterR

supply

maxRwellR

capacity

deficitR

scenarios

water stacking

acreage optimization

natural

resource

sufficiency

surface water

sufficiency

groundwater

sufficiency

supplyRfromR

naturalR

resources

yes

yes

yes

no

no

no

>

>

>

ThisIpaperIisIpresentedIwithinItheI frameworkIofItheIprojectIFREEWAT1IwhichI hasIreceivedIfundingIfromItheIEuropeanI Union’sIHORIZONIy9y9IresearchIandI innovationIprogrammeIunderIGrantI AgreementIn5I6'yyy'5

ICT TOOLS FOR

ENHANCING SUSTAINABLE

WATER MANAGEMENT

IN RURAL ENVIRONMENT

G.CDeCFilippisC¹*•D.CRizzoC¹•C

FvpTrianap¹•MvpGhettap¹•

IvpBorsip²•

p

EvpBonarip¹•RvpRossettop¹

¹pInstitutepofpLifepSciencesQpScuolap SuperiorepSantgAnnaQpPisapdItaly@ p p p ²pTEApSISTEMIpSvpvAvQpPisapdItaly@ mpgvdefilippis@sssupvit 19 partnersIfromIEUIandInon:EUIcountriesI involvedIinItheIplatformIdevelopmentIandI itsIapplicationItoI7'IcaseIstudies5

PROJECT INFO

Start:I9'Iy975I|IEnd:I99Iy977

IIII

Coordinator:IRudyIRossettoI

Sant.AnnaISchoolIofIAdvancedIStudies study1area1 boundariesB1 hydrostratigraphyB1 surface1water1 bodiesB1sourceJ sink1terms1B1water1 management1 scenarios1Dfarms1 sizeB1crop1typesBWWWR

no optimization

InputCfiles

forpsimulationpcodes

ModelCDataCObjects

GISClayers

Conclusions

QGISCpluginC

Sp

at

ia

lp

di

s

cret

iza

t

i

on

p

Te

m

po

ral

pd

is

c

ret

i

za

tio

np

FARM PROCESS1DFMPB1Hanson1et1alW1AMLG)1

is1designed1to1simulate1the1balance between demand1Dcrop1irrigation1and1 onSfarm1inefficiency1lossesR1and supply1 DsurfaceSwater1deliveriesB1groudwater1 pumpageB1etcWR

FREEWAT is1an1ongoing1

HAMAM1project1financed1by1

the1EU1CommissionB1aimed1

at1producing1a1

free and open

source

1modeling1platform1to1

simplify1the1application1of1

EU1waterSrelated1Directives1

DRossetto1et1alW1AMLOR

.

FREEWATCplatformpisp

implementedpaspapcompositep

pluginpinpQGISpandptakesp

advantagepofpSpatialitepaspap

geodatabasepmanagementp

systempandpFloPypaspreferencep

pythonplibraryptopconnectpwithp

hydrologicalpcodesQpparticularlyp

MODFLOW‐OWHMvp

Allpthepnecessaryppre‐pandp

post‐processingpproceduresp

canpbeprunpwithinpQGISQpsopitp

turnspoutpapsimpleCandC

intuitiveCuserCinterfaceptop

managepthepsimulationpofp

complexpproblemspinpwhichp

thepmutualpinteractionpamongp

surfacepwaterQpgroundwaterp

andpanthropicpwaterpdemandb

supplyptermspcanpbephandledv

userpdefinedp

modelCgridCandp

intra‐annualp

time‐stepsp

dstressCperiods@p

Output examples (demand and supply simulated trends)

w

ww

.

fre

e

wa

t

.e

u

FREEWATpispachievingppthepintegrationp

betweenpGeographicpInformationpSystempdGIS@pandp

modellingptoolsQpbypsimplifyingpdO@pthepstorageQp

analysispandprepresentationpofpgeographicpdata;p

dD@pthepgenerationpofpsimulationpscenariospandp

guidelinesptopaddresspwaterpmanagementp

activitiesv

Freewat

14RcaseRstudies

Implementation of the Water Framework Directive Rural water management

REFERENCES

Hanson1RTB1Boyce1SEB1Schmid1WB1Hughes1JDB1Mehl1SMB1Leake1SAB1 Maddock1TB1Niswonger1RGB1AMLGW1OneSWater1Hydrologic1Flow1Model1 DMODFLOWSOWHMRW1U.S. Geological SurveyB1RestonB1VirginiaW Rossetto1RB1Borsi1IB1Foglia1LB1AMLOW1FREEWAT31FREE1and1open1source1 software1tools1for1WATer1resource1managementW1Rendiconti Online Societa Geologica ItalianaB1NO3AOASAOOW1DOI31LMWNNMLJROLWAMLOWLLN

EURH2020RFREEWAT @H2020FREEWAT MLT (i.e., demand) download the poster h ere waterpunitpdcultivatedpfield@ drainagepchannel irrigationpchannel waterpwell precipitations waterpunitpdurbanparea@ plantp uptake evapo‐ transpiration

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