The University of Palermo and the University of Enna “Kore” are pleased to invite the hydroinformatics international community to the 13th International Conference on Hydroinformatics (HIC 2018).
Hydroinformatics is a branch of informatics which concentrates on the application of information and communications technologies (ICTs) in addressing the increasingly serious problems of the equitable and efficient use of water for many different purposes. Hydroinformatics scientific community is continuously growing and its interests are widening from numerical modelling to the development of new sensors and tools, the interpretation of increasing amounts of data, the analysis and management of complex systems, the integration of models, data and controls for practical applications.
Today, multi-disciplinarity is the key for the sustainable management of water resources. The work of the IAHR/IWA Joint Committee on Hydroinformatics and of several International Water Association Specialist Groups has demonstrated the importance of knowledge integration among scientists, practitioners and technology experts in order to tackle the complex challenges of water management in a changing world.
HIC 2018 seeks to create a forum for exchanging ideas, for promoting ground-breaking technologies, for proposing new extensive collaborations, for finding new solutions for water management and environment preservation.
A. Technologies for Water Management and Monitoring
A1. Advanced technologies for water systems monitoring
A2. Soft and smart sensors applications for water systems
A3. Real time control technologies and applications
A4. ICT for water
A5. Optimization techniques and their application
A6. Complex network theory and its application
A7. Internet, Cloud and Mobile application for water
A8. Social Media Mining and Open Data for water
A9. Decisions using Probabilistic Forecasts
B. Remote sensing
B1. Remote sensing applied to hydrology
B2. Remote sensing for water resource management
B3. Remote sensing for coastal modelling and water quality
B4. Airborne and remote data integration and verification
B5. Data Assimilation Techniques
C. Big-data, knowledge and water data management
C1. Data-mining techniques
C2. Knowledge management
C3. Big-data analytics
C4. Complex network analysis
C5. SCADA systems and data validation
C6. DSS and GIS for water management
C7: IOT applications for water management
D. Hydraulic and hydrological modeling
D1. Physically based vs conceptual hydrological models
D2. Mathematical modelling of water systems
D3. Hydraulic modelling of complex water bodies
D4. Water quality modelling
D5. Model validation, calibration and uncertainty analysis
D6. Predictive Uncertainty assessment and Ensembles
D7. Computational intelligence in data driven hybrid modelling
D8. Modeling of urban water distribution and drainage systems
E. Climate change impacts
E1. Regional Climate Modeling
E2. Quantification of Uncertainties
E3. Impacts on resources, flooding, drought
E4. Resilience, adaption and mitigation
F. Environmental and Coastal Hydroinformatics
F1. Coastal and water quality modelling
F2. Surface and ground water modeling
F3. Integrated Water Resources Management
07月01日
2018
07月05日
2018
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