Hydroinformatics II XMas Lecture 2012 - UFZHydroinformatics II XMas Lecture 2012 Courtesy: Lars...
Transcript of Hydroinformatics II XMas Lecture 2012 - UFZHydroinformatics II XMas Lecture 2012 Courtesy: Lars...
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Hydroinformatics II
XMas Lecture 2012
Courtesy: Lars Bilke, Thomas Fischer, Jan Friesen, Thomas Kalbacher, Edda Kalbus, Rudolf Liedl, Karsten Rink, Tino Rödiger, Christian Siebert, Marc Walter, Björn Zehner
Terrestrial Environmental System Simulation & INtegration
Welcome
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Contents
• Framework: IWAS research project
• Data: … from the large scale (RS)
• Data: … ground truth
• Data: … preparation
• Model: Set‐up
• Code: Requirements
• Model: Results
• Visualization
Citation and sources
IWAS – International Water Research Alliance Saxony
Management of water resources in hydrologically sensitive regions
Middle East (Saudi Arabia, Oman)
funded by
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Water resources assessment in Arabian Peninsula
Climatic boundaries
Infiltration & recharge
Groundwater
Vegetation
Integrated hydrological synthesis
Observation - Modeling - Analysis – Management Tool
Jan Friesen
Anke Hildeb
randt
Christian Siebert
T Kalbacher / E Kalbus
Rudolf Liedl / M
arc Walter
Climatic boundary conditions
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Validation using ground observation data
Source
Tropical Rainfall Measuring Mission (TRMM), product 3B42,
Global Surface Summary of the Day (GSOD)
Annual rain days above 10 mm/day 1998 – 2009
satellite estimate
Validation using ground observation data
Source
Tropical Rainfall Measuring Mission (TRMM), product 3B42,
Global Surface Summary of the Day (GSOD)
Rain gauge observation data
Low density gauge network
High spatial variability
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Additional satellite data
Vegetation indices (MODIS EVI) or Land Surface Temperature data (MODIS)
Change detection determines if rainfall occurred
Challenges
Relate magnitude of change (Vegetation or temperature) to rainfall amount and relevance for ground water recharge
Validation using change detection of land surface
Source
Tropical Rainfall Measuring Mission (TRMM), product 3B42,
Moderate Resolution Imaging Spectroradiometer (MODIS), product 13Q1
•25 km
•TRMM resolution
•250 m
•MODIS resolution
Validation using change detection of land surface
Vegetation response to rainfall
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Linking ground observations to satellite data
Land surface temperature observations – on test site
Measure land surface temperature signal before and after different sprinkler irrigation scenarios
Determine duration and magnitude of sprinkler irrigation related surface temperature signals
Determine relevant rainfall events required for ground water recharge
infiltration & potential recharge
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Al-Nafud 65.000 km2
Ad-Dahna 25.000 km2
Rub-al-Khali 650.000 km2
Upper Mega Aquifer: 740.000 km2 sand cover
Quaternary CretaceousTertiary
Does recharge occurs under sand cover and aridity?
Indications are given...
...however, investigations so far never below point of no return
?
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TDR monitoring full scale field experiment incl. Observation of chemical/isotopical fractionation from precipitation to recharge
Movie
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vertical and sloped TDR-boreholes
time [days]
dept
h [m
eter
]
0
5
0 5025
drywet
sloped suction drillprecipitation, temperature
saturation, net-flux
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Data integration – System analysis - VisualizationNew generation of Management Tools
Scientific Software made by Helmholtz
OGS – Philosophie
FEM
DE
OGS‐3D / OGS ‐> OpenSG
Bohrlochdaten Zeitreihen DEM Landnutzung Strukturgeologie : 1/2/3/4 D : interaktiv
OGS#mHM
OGS‐THMC
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OGS – Visibility
Korea
Data Integration: Which
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Data Integration: How to
Data: Geography
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Data processing: Rainfall
Data processing: Rainfall
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Data processing: Rainfall
Data processing: Borehole data
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Data processing: Aquifer modeling
Data processing: Aquifer system
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Data processing: Aquifer system
Ax = b
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Groundwater modeling
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Data processing: Rainfall
Movie
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VISLab
Aus: Zehner, 2009 / 2010
Probleme:
Datenlage
Komplexität
Validierung Zehner, 2005
VISLab: Projects
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PLine, TSurf VSet
-> OpenSG file
SGrid, (Voxet,
Solid)-> VTK-file
Thüringer Becken Schleswig Holstein
Data processing: Rainfall
FroheWeihnachtenGuten Rutsch
2012