said integrated web application for easier dam operation · co-funded by the seventh framework...
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![Page 1: SAID integrated web application for easier dam operation · Co-funded by the seventh framework programme (FP7), under grant agreement no. 619132, within the Water Inno & Demo-1 Integrated](https://reader035.vdocuments.net/reader035/viewer/2022070814/5f0e62cb7e708231d43efe77/html5/thumbnails/1.jpg)
Sergio Romero
October 19 2016, Lourdes (France)
1
SAID integrated web application for easier dam operation
Co-funded by the seventh framework programme (FP7), under grant agreement no. 619132, within the Water Inno & Demo-1
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Integration dimensions
2Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
IntegratedDSS
Integration scenariosIdentification of new scenarios, DSS
interactions and constraints aimed at
efficient river basin exploitation
Computational coresTechnological support for the coordination
and communication of the computational
cores of different DSSs
Graphical user interfaceUnified interface oriented to final users for
the definition of scenario parameters and
analysis of resultsData managementRepository of data series obtained from
external systems, typically in different
representation formats
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Integration scenario: Flood
3Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
Simulation of reservoir inflow (72 hrs)
Set reservoir constraints (e.g. level, outflow)
Optimization of dam maneuvers
Simulation of reservoirs and downstream flow
NOTES• Guadalhorce & Guadalteba modeled as one single reservoir• Water quality and energy concerns not considered• Results include the dynamic state of dam elements (outlets, spillways, …)
(FM)
(FM)
(FM)
[change constraints]
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Integration scenario: Ordinary
4Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
Simulation of reservoir inflow (72 hrs)
Set water demand and quality constraints(e.g. objective salt concentration)
Calculation of water mixtureGuadalhorce + La Encantada (urban supply)
All reservoirs + La Encantada (urban and irrigation)
Set energy constraints(e.g. plant capacity, availavility)
(FM)
(WQ)
[yes]
Optimization of energy production (EM)
Demand exceeds
plant capacity
Optimization of dam maneuvers(additional water release)
Simulation of reservoirs and downstream flow
(FM)
(FM)
[no]
NOTES• Objective salt concentration below 6 g/L (urban) and 0.8 g/L (urban+irrigation)• WQ-DSS provides daily results and EM-DSS produces detailed hydrographs
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Technological requirements Distributed computing: DSSs and peer applications running on
different computers and networks require communication
Application heterogeneity: windows-linux OSs, java-.net languages, web-desktop applications, consumer-producer patterns
Extensibility: new DSSs could be added to the framework or the entire solution migrated to a different river basin
Real-time execution: applications should react and produce results as soon as new input data are available (e.g. river flood)
Feasibility: Moderate efforts to incorporate integration technology into existing DSSs (project deadlines)
5Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
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SAID DSSs provide integration functionality by means of simulation, configuration and data query machine-to-machine services
Service orientation
6Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
DSS Description Input Output
FM-DSS
Hydroview
Run forecast simulation Time period
Reservoir outflow
Reservoir volume and inflow
Water flow and level at control points
Resultant flood plain
FM-DSS
BeDam
Synthesis of maneuvers Reservoir inflow
Optimization mode
Constraints
Reservoir volume
Outlet and spillway opening degree
Total outflow of each reservoir
WQ-DSS Water mixture calculation Water demand
Salt concentration
Reservoir balance
Composition of water mixture
EM-DSS
ELD
Power plant optimization Plant capacity
Service time
Released volume
Optimal power plant hydrograph
Energy production
Total profit
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Integrated DSS architecture
7Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
Integrated DSS
SAID NetworkCMAyOT Server
Data acquisition
services
WQ-services
EM-services
FM-services
Web Server
Input data sharing DSS service layer Internet/Intranet
Web application
Data
repository
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Integrated DSS: web interface
8Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
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Tool for observed data
Co-funded by the seventh framework programme (FP7), under grant agreement no. 619132, within the Water Inno & Demo-1
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Observed data: networks
10Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
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Observed data: alarms
11Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
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Observed data: graphs
12Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
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Flood scenario simulation
Co-funded by the seventh framework programme (FP7), under grant agreement no. 619132, within the Water Inno & Demo-1
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Flood mode: constraints
14Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
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Flood mode: manoeuvres
15Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
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Flood mode: simulation
16Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
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17
Ordinary scenario simulation
Co-funded by the seventh framework programme (FP7), under grant agreement no. 619132, within the Water Inno & Demo-1
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Ordinary mode: constraints
18Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
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Ordinary mode: simulation (I)
19Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
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Ordinary mode: simulation (II)
20Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
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Other features Predefined user roles and information levels
Access to specific collections of observed data/forecasts
Permissions to launch ordinary and/or flood simulations
Concurrent access to the DSS
Multiple users can explore SAID data with a web browser
Simulations limited to a number of concurrent users
Automatic update of river basin response
River model executed in a continuous basis (once a day)
Climate data and dam discharges in the last 24 hours used
21Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
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Conclusions The Integrated DSS allows complex decision making based
on parameters and objectives of different domains (flood control, water quality, energy production)
Monitoring of observed data and DSS variables
Predictive simulations involving multiple DSS interactions
Required user interactions are greatly simplified
The proposed framework is modular and reusable, and can be exported to other river basins with reasonable efforts
Integration in SAID is being addressed using modern practices of distributed systems and software engineering
22Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1
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Thank you for your attention
www.said-project.eu
23Co-funded by the seventh framework programme (FP7), under grant
agreement no. 619132, within the Water Inno & Demo-1