chair and institute of hydraulic and environmental engineering

14
www.grf.bg.ac.yu Chair and Institute of Hydraulic and Environmental Engineering Prof. Marko Ivetic Head of the Chair Prof. Dusan Prodanovic Director of the Institute

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www.grf.bg.ac.yu

Chair and Institute of Hydraulic andEnvironmental Engineering

Prof. Marko IveticHead of the Chair

Prof. Dusan ProdanovicDirector of the Institute

Academic Studies

� CurriculaFirst Degree – 4 years

Theory of structures 1Soil mechanicsTransportation infrastructure systemsHydrologyLegislative in civil engineeringEngineering economyConcrete structuresWater qualityHydraulics 1Metal and timber structuresFoundationHydraulics 2Municipal hydraulic engineering 1

Hydraulic and Environmental Engineering

Drainage systemHydraulic structures 1Engineering hydrologyConstruction management and technologyIrrigationWaterways and portsMunicipal hydraulic engineering 1Groundwater use and controlHydropower engineeringRiver engineeringWater resources systemsMeasurements in hydraulic engineeringSynthesis project

Academic Studies, cont.

� CurriculaSecond Degree

Hydraulic structures 2Numerical methods in hydraulic engineeringElective course 1Elective course 2Elective course 3Elective course 4Diploma project

Hydraulic and Environmental Engineering

Elective courses 1, 2, 3 and 4Construction of hydraulic engineering infrastructureFlood controlTransport processes in hydraulic and environmentalengineeringRisk and reliability analysis in civil engineering

Solid waste managementStochastic hydrologyHydroinformaticsIntegrated urban water managementObject oriented programmingSystem optimization

Number of students:30 on average

Academic Studies, cont.

� PhD Candidates/Thesis

Hydraulic and Environmental Engineering

Current Annual RealLoss Volume

PressureManagement

InfrastructureManagement

ProactiveLeak

Detection

ImprovedLeak

RepairTime

EconomicLevel

Real Loss

UnavoidableReal Loss

Current Annual RealLoss Volume

PressureManagement

InfrastructureManagement

ProactiveLeak

Detection

ImprovedLeak

RepairTime

EconomicLevel

Real Loss

UnavoidableReal Loss

� Branislav BabicEnhanced methodology for assessment andimprovement of Water Supply System performance

� Branislava JovanovicDevelopment of WaterTreatment Techniques for Arsenic Removal

� Dejana DjordjevicNumerical study of river confluence hydrodynamics

� Vladana Rajakovic OgnjanovicThe effect of water quality on steel corrosion

� Dragutin PavlovicDynamic Monitoring of Distribution Networks Leakage Detection

� Vladimir HristoduluAnalysis of system operation in critical situation inwater supply systems

� Olivera DoklesicPerformance Indicator improvements of Water SupplySystems with large seasonal consumption variations

0 5 10 15 20 25 30 35 40

0

10

20

30

40

50

60

70

80

90

100

Kon

cent

raci

ja h

lorid

a, m

g/L

Vreme, dani

Hloridi0.1Hloridi1Hloridi10Hloridi50Hloridi100

50

60

70

z[m

]

5400 5600 5800 6000 6200 6400 6600 6800 7000

y [ m ]

50

60

70

z[m

]

5400 5600 5800 6000 6200 6400 6600 6800 7000

y [ m ]

tributary confluence main river

river bed

Academic Studies, cont.

� Laboratories

Hydraulic and Environmental Engineering

� LABORATORY FOR SANITARY ENGINEERING

� LABORATORY FOR FLUID MECHANICS ANDFLUID VOLUME MEASUREMENT

� LABORATORY FORHYDROMETRY ANDHYDROLOGY

� LABORATORY FOR HYDRAULICS ANDWATERWAY REGULATION

Research IRTCUD

Hydraulic and Environmental Engineering

� Resolution on the 24th UNESCO General Conference,Paris, October 1987

� Participation in & contribution to the IHP programme� Cooperation with:

� UNESCO and UN organisations (UNEP,UNDP, UNIDO)� professional institutions (IAHR, IAWPRC, IAHS)� World Meteorological Organization (WMO)� governmantal institutions and NGOs� universities and research institutions

• IRTCUD Belgrade• CC – Cold Climate IRTCUD, Trondheim• HT – Humid Tropic IRTCUD, Porto Alegre• ASA – Arid & Semi Arid IRTCUD

IRTCUD Network:

SEE Network:• CUW – UK, London• IRTCUW – BG, Sofia• CUW – BL, Banja Luka• Regional CUWM, Tehran

CUW Network:

Research, cont.

Hydraulic and Environmental Engineering

Partners:� National Technical University of Athens, Greece� University of Ljubljana, Slovenia� Technical University of Civil Engineering Bucharest, Romania� University of Belgrade, Faculty of Civil Engineering, Serbia

Duration: 2 years

Organization: e-learning + lecturing

Curriculum: 4 Thematic areas / 12 Modules

Theses: focus on integrated management of transboundary waterresources

� EDUCATE project – Postgraduate Studies in Water Resources andEnvironmental Management

Research, cont.

Hydraulic and Environmental Engineering

� Action C18: Performance assessment of urban infrastructure services: thecase of water supply, wastewater and solid waste

� Action C22: Urban flood management

� UNESCO IHP VI, Focal Area 3.5

� COST

� Data requirements for integrated urban watermanagement

� UGROW (UrbanGROroundWater) – An advancedmodelling tool for the transient simulationand management of urban groundwater systems

� Published books

Research, cont.

� Long term cooperation with Kyoto University - Japan

Hydraulic and Environmental Engineering

� Numerical modeling of environmental hydraulics

o Aquifer restoration technologies

soil

waterair CHCl3

soil

air

o Modeling of hydrodynamics and waterquality in lakes and reservoirs

o Application of advanced technologies forlake revitalization

Research, cont.

Hydraulic and Environmental Engineering

� Flood Risk Management Consortium 1 and 2

� National scientific projects

� Development of IntegratedHydroinformatic Tools GIS Based(Geology, Geotechnics, Groundwater,Water Distribution, Sewerage, etc.)

� Dynamic Monitoring of DistributionNetworks Leakage Detection

� CARDS programme – Pilot RiverBasin Plan for the Sava River

� UNESCO: International Network ofWater-Environmental Centres forthe Balkans

� DAAD - Improvement of Science and Research in Serbia andMontenegro in the Field of Water Management

Cooperation with Industry (few selected projects ...)

� Measurement of waste water in Belgrade sewerage system� Mathematical Model of water quality in the Sava and Danube River

in Belgrade using WASP 7.0

Hydraulic and Environmental Engineering

Visnjica

Ada Huja 1 i 2Istovariste

6 7

4Dorcol

Usce

Lasta

Sajam

Dunav

Dunav

Sava

0500

10001500

20002500

30003500

40004500

8/26/0712:00 A

M

8/31/0712:00 A

M

9/5/0712:00 A

M

9/10/0712:00 A

M

9/15/0712:00 A

M

9/20/0712:00 A

M

9/25/0712:00 A

M

9/30/0712:00 A

M

10/5/0712:00 A

M

0

0.2

0.4

0.6

0.8

1

1.2

1.4

1.6

Cooperation with Industry, cont.

� Advanced 2D and 3D hydraulic modelling:- Study of the flow structure at the water intake Makis

- Study of hydraulic and morphological regimeat the Danube and the Sava confluence in Belgrade

- Revitalization of the streams on the Great War Island, confluence of theDanube and Sava - An action to preserve conditions for fish breeding

Hydraulic and Environmental Engineering

Cooperation with Industry, cont.

� Environmental and hydraulic engineering issues of Fly Ash Landfills andMine Tailings of major Thermal Power Plants and Mining Sites in theRegion

� Environmental Impact Assessment studies of Planned and ConstructedDams and Reservoirs

Hydraulic and Environmental Engineering

Cooperation with Industry, cont.

� Urban Drainage modelling and technology - Tradition and world-wide recognition

Hydraulic and Environmental Engineering