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IWP real-time monitoring system for operational water management 
Herbert Berger 
Rijkswaterstaat 
The Netherlands
Rijkswaterstaat 
Operational Water Management at Rijkswaterstaat 
• 
Responsible for operational water management in main waterways 
• 
Operating sluices, pumps and weirs 
• 
24 h/dag, 365 days/year 
• 
Performed by operators 
– 
sub-task next to shipping management 
2 IWP
Rijkswaterstaat 
10 watersystems 
• 
Twentekanalen 
• 
IJsselmeergebied 
• 
Amsterdam-Rijnk./ 
Noordzeekanaal 
• 
Maas/Julianakanaal 
• 
Noord-Brabantse en 
Midden-Limburgse 
kanalen 
• 
Meppelerdiep 
• 
Kanaal Gent-Terneuzen 
• 
Haringvliet 
• 
Nederrijn-Lek 
• 
Zeeuwse meren
Rijkswaterstaat 
Before IWP… 
4 IWP
Rijkswaterstaat 
Purpose of IWP 
To help the operator with 
• 
all the information required 
• 
forecasts 
• 
an operating advice 
5 IWP
Rijkswaterstaat 
Characteristics IWP 
• 
Focus on real-time water management 
• 
Region tailored system 
– 
Each region is unique 
– 
Workshops with operators 
• 
Suited to the operator’s needs 
• 
Nationwide instrument, nationwide maintenance, regional implementation 
• 
Based on Delft-FEWS 
• 
Realised in 2018 
6 IWP
Rijkswaterstaat 
Why Delft-FEWS? 
• 
Easy connection with existing FEWS forecasting models 
• 
Maintenance can be the same as for other FEWS models 
• 
Proven reliability 
•But… no dedicated screen displays 
7 IWP
Rijkswaterstaat 
Five Plateaus 
8 IWP 
Plateau 1 Data collection and presentation 
Water levels & discharges Meteorological data Data from waterboards SCADA data (position of weirs, pumps etc) Meteorological forecasts Forecastst from other FEWS systems Forecasts to other FEWS systems 
Plateau 2 Forecasts / operating alternatives 
Plateau 3 
Operating advice 
Plateau 4 
Green button for realising the advice 
Plateau 5 Input for water quality models for calamity events 
Rainfall/runoff models Hydrodynamic models RTC-tools
Rijkswaterstaat 
Five Plateaus 
9 IWP 
Plateau 1 
Data collection and presentation 
Water levels & discharges 
Meteorological data 
Data from waterboards 
SCADA data (position of weirs, pumps etc)
Rijkswaterstaat 
10 IWP
Rijkswaterstaat 
11 IWP
Rijkswaterstaat 
12 IWP
Rijkswaterstaat 
13 IWP
Rijkswaterstaat 
Five Plateaus 
14 IWP 
Plateau 1 Data collection and presentation 
Water levels & discharges Meteorological data Data from waterboards SCADA data (position of weirs, pumps etc) Meteorological forecasts Forecastst from other FEWS systems Forecasts to other FEWS systems 
Plateau 2 
Forecasts / operating alternatives 
Rainfall/runoff models Hydrodynamic models
Rijkswaterstaat 
IWP 
15
Rijkswaterstaat 
IWP 
16
Rijkswaterstaat 
IWP 
17
Rijkswaterstaat 
Five Plateaus 
18 IWP 
Plateau 1 Data collection and presentation 
Water levels & discharges Meteorological data Data from waterboards SCADA data (position of weirs, pumps etc) Meteorological forecasts Forecastst from other FEWS systems Forecasts to other FEWS systems 
Plateau 2 Forecasts / operating alternatives 
Plateau 3 Operating advice 
Plateau 4 
Green button for realising the advice 
Rainfall/runoff models Hydrodynamic models RTC-tools
Rijkswaterstaat 
Five Plateaus 
19 IWP 
Plateau 1 Data collection and presentation 
Water levels & discharges Meteorological data Data from waterboards SCADA data (position of weirs, pumps etc) Meteorological forecasts Forecastst from other FEWS systems Forecasts to other FEWS systems 
Plateau 2 
Forecasts / operating alternatives 
Plateau 3 Operating advice 
Rainfall/runoff models 
Hydrodynamic models 
RTC-tools
Rijkswaterstaat 
IWP 
20
Rijkswaterstaat 
Five Plateaus 
21 IWP 
Plateau 1 Data collection and presentation 
Water levels & discharges Meteorological data Data from waterboards SCADA data (position of weirs, pumps etc) Meteorological forecasts Forecastst from other FEWS systems Forecasts to other FEWS systems 
Plateau 2 Forecasts / operating alternatives 
Plateau 3 Operating advice 
Plateau 4 
Green button for realising the advice 
Rainfall/runoff models 
Hydrodynamic models 
RTC-tools
Rijkswaterstaat 
IWP 
22
Rijkswaterstaat 
Five Plateaus 
23 IWP 
Plateau 1 
Data collection and presentation 
Water levels & discharges Meteorological data Data from waterboards SCADA data (position of weirs, pumps etc) Meteorological forecasts Forecastst from other FEWS systems Forecasts to other FEWS systems 
Plateau 2 Forecasts / operating alternatives 
Plateau 3 Operating advice 
Plateau 4 
Green button for realising the advice 
Plateau 5 Input for water quality models for calamity events 
Rainfall/runoff models 
Hydrodynamic models 
RTC-tools
Rijkswaterstaat 
24 IWP
Rijkswaterstaat 
Development process 
• 
Workshops 
• 
Refinement in small steps 
• 
Plateau by Plateau 
• 
Pilot water system 
Regional hydrologist 
Information analyst 
Regional project leader 
Implement expert (Deltares) 
25 IWP
Rijkswaterstaat 
Benefits 
• 
Improved water level management 
• 
Reduction of pumping costs 
• 
Secure the experience of the operators 
• 
High level of maintenance 
• 
Better prepared for water calamity events 
26 IWP
Rijkswaterstaat 
Current challenges 
• 
Finding time in the agendas for workshops with end-users 
• 
Data extraction from SCADA systems (closed systems) 
• 
Data exchange with water boards (many systems) 
• 
Simple presentation of scenario calculations 
27 IWP
Rijkswaterstaat 
Current challenges 
• 
Finding time in the agendas for workshops with operators 
• 
Data extraction from SCADA systems (closed systems) 
• 
Data exchange with water boards (many systems) 
• 
Simple presentation of scenario calculations 
Future challenges 
• 
Realising joint water management among regions of Rijkswaterstaat 
• 
Realising joint water management with water boards 
• 
Realising national infrastructure for data-exchange 
28 IWP
Rijkswaterstaat 
Summary 
• 
IWP is an information system for the operators on sluices and weirs 
• 
Is used 24 h/day, year around 
• 
Gives information about 
– 
Present situation 
– 
Forecasts 
– 
Operation advices 
• 
Will be realised for all level regulated watersystems of Rijkswaterstaat 
• 
Benefits: 
– 
improves water level management 
– 
secures the implicit knowledge of the operators 
– 
creates opportunities for joint operational water management 
29 IWP
Rijkswaterstaat 
IWP 
30
Rijkswaterstaat 
31 IWP
Rijkswaterstaat 
32 IWP
Rijkswaterstaat 
33 IWP

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DSD-INT 2014 - Delft-FEWS Users Meeting - IWP real-time monitoring system for operational water management, Herbert Berger, Rijkswaterstaat

  • 1. IWP real-time monitoring system for operational water management Herbert Berger Rijkswaterstaat The Netherlands
  • 2. Rijkswaterstaat Operational Water Management at Rijkswaterstaat • Responsible for operational water management in main waterways • Operating sluices, pumps and weirs • 24 h/dag, 365 days/year • Performed by operators – sub-task next to shipping management 2 IWP
  • 3. Rijkswaterstaat 10 watersystems • Twentekanalen • IJsselmeergebied • Amsterdam-Rijnk./ Noordzeekanaal • Maas/Julianakanaal • Noord-Brabantse en Midden-Limburgse kanalen • Meppelerdiep • Kanaal Gent-Terneuzen • Haringvliet • Nederrijn-Lek • Zeeuwse meren
  • 5. Rijkswaterstaat Purpose of IWP To help the operator with • all the information required • forecasts • an operating advice 5 IWP
  • 6. Rijkswaterstaat Characteristics IWP • Focus on real-time water management • Region tailored system – Each region is unique – Workshops with operators • Suited to the operator’s needs • Nationwide instrument, nationwide maintenance, regional implementation • Based on Delft-FEWS • Realised in 2018 6 IWP
  • 7. Rijkswaterstaat Why Delft-FEWS? • Easy connection with existing FEWS forecasting models • Maintenance can be the same as for other FEWS models • Proven reliability •But… no dedicated screen displays 7 IWP
  • 8. Rijkswaterstaat Five Plateaus 8 IWP Plateau 1 Data collection and presentation Water levels & discharges Meteorological data Data from waterboards SCADA data (position of weirs, pumps etc) Meteorological forecasts Forecastst from other FEWS systems Forecasts to other FEWS systems Plateau 2 Forecasts / operating alternatives Plateau 3 Operating advice Plateau 4 Green button for realising the advice Plateau 5 Input for water quality models for calamity events Rainfall/runoff models Hydrodynamic models RTC-tools
  • 9. Rijkswaterstaat Five Plateaus 9 IWP Plateau 1 Data collection and presentation Water levels & discharges Meteorological data Data from waterboards SCADA data (position of weirs, pumps etc)
  • 14. Rijkswaterstaat Five Plateaus 14 IWP Plateau 1 Data collection and presentation Water levels & discharges Meteorological data Data from waterboards SCADA data (position of weirs, pumps etc) Meteorological forecasts Forecastst from other FEWS systems Forecasts to other FEWS systems Plateau 2 Forecasts / operating alternatives Rainfall/runoff models Hydrodynamic models
  • 18. Rijkswaterstaat Five Plateaus 18 IWP Plateau 1 Data collection and presentation Water levels & discharges Meteorological data Data from waterboards SCADA data (position of weirs, pumps etc) Meteorological forecasts Forecastst from other FEWS systems Forecasts to other FEWS systems Plateau 2 Forecasts / operating alternatives Plateau 3 Operating advice Plateau 4 Green button for realising the advice Rainfall/runoff models Hydrodynamic models RTC-tools
  • 19. Rijkswaterstaat Five Plateaus 19 IWP Plateau 1 Data collection and presentation Water levels & discharges Meteorological data Data from waterboards SCADA data (position of weirs, pumps etc) Meteorological forecasts Forecastst from other FEWS systems Forecasts to other FEWS systems Plateau 2 Forecasts / operating alternatives Plateau 3 Operating advice Rainfall/runoff models Hydrodynamic models RTC-tools
  • 21. Rijkswaterstaat Five Plateaus 21 IWP Plateau 1 Data collection and presentation Water levels & discharges Meteorological data Data from waterboards SCADA data (position of weirs, pumps etc) Meteorological forecasts Forecastst from other FEWS systems Forecasts to other FEWS systems Plateau 2 Forecasts / operating alternatives Plateau 3 Operating advice Plateau 4 Green button for realising the advice Rainfall/runoff models Hydrodynamic models RTC-tools
  • 23. Rijkswaterstaat Five Plateaus 23 IWP Plateau 1 Data collection and presentation Water levels & discharges Meteorological data Data from waterboards SCADA data (position of weirs, pumps etc) Meteorological forecasts Forecastst from other FEWS systems Forecasts to other FEWS systems Plateau 2 Forecasts / operating alternatives Plateau 3 Operating advice Plateau 4 Green button for realising the advice Plateau 5 Input for water quality models for calamity events Rainfall/runoff models Hydrodynamic models RTC-tools
  • 25. Rijkswaterstaat Development process • Workshops • Refinement in small steps • Plateau by Plateau • Pilot water system Regional hydrologist Information analyst Regional project leader Implement expert (Deltares) 25 IWP
  • 26. Rijkswaterstaat Benefits • Improved water level management • Reduction of pumping costs • Secure the experience of the operators • High level of maintenance • Better prepared for water calamity events 26 IWP
  • 27. Rijkswaterstaat Current challenges • Finding time in the agendas for workshops with end-users • Data extraction from SCADA systems (closed systems) • Data exchange with water boards (many systems) • Simple presentation of scenario calculations 27 IWP
  • 28. Rijkswaterstaat Current challenges • Finding time in the agendas for workshops with operators • Data extraction from SCADA systems (closed systems) • Data exchange with water boards (many systems) • Simple presentation of scenario calculations Future challenges • Realising joint water management among regions of Rijkswaterstaat • Realising joint water management with water boards • Realising national infrastructure for data-exchange 28 IWP
  • 29. Rijkswaterstaat Summary • IWP is an information system for the operators on sluices and weirs • Is used 24 h/day, year around • Gives information about – Present situation – Forecasts – Operation advices • Will be realised for all level regulated watersystems of Rijkswaterstaat • Benefits: – improves water level management – secures the implicit knowledge of the operators – creates opportunities for joint operational water management 29 IWP