Geographic Information Systems (GIS) - an Advanced Tool for the European Water Industry
Jan 18, 2006
Interdisciplinary approaches and solutions are becoming increasingly widespread in the European water industry following the introduction of the European Water Framework Directive (WFD).
In the context of comprehensive river basin management, the various specialist aspects involved can no longer be seen separately; a holistic approach must be adopted to ensure that all the interactions between the various aspects are taken into consideration. In Europe, we will need to adapt to the far-reaching requirements of the WFD and the changes taking place in this connection. The utilization of the technologies that are available is both a challenge and an opportunity.
In order to meet the objectives of the WFD, the development and use of geographic information systems and the organization of data interchange will be essential requirements for the water industry.
Apart from efficient internal data management, data and information interchange with external water industry bodies will also be needed. It will be necessary to organize a water industry network. For this purpose, the Wupperverband has opted for advanced communication and information technology and operates the FluGGS river basin geographic information system on the internet (http://www.FluGGS.de). The system can be accessed from a standard internet browser (Fig. 1).
Over the past two centuries, the attitudes of people to rivers and streams have undergone a profound change. At the beginning of the industrial revolution, rivers were seen merely as objects to be used for a purpose, but the problems resulting from this approach soon became apparent.
At the beginning of the 19th century, salmon were so plentiful in the River Wupper that a regulation was issued forbidding people from giving their servants salmon more than five times a week. However, the environmental problems caused by industrialization were so severe that the last salmon was caught in the Wupper in 1841.
In 1891, the growing scarcity of drinking water and the poor quality of the water available led to the construction of Germany's first dam for drinking water supply on the Wupper. The age of the artificial reservoir had started. In 1930, the Wuppergesetz (or Wupper Act) establishing the Wupperverband came into force.
The Wupperverband – one of the water industry associations with a special legal status in North Rhine-Westphalia – is responsible for managing streams and rivers with a total length of about 2,300 km in the catchment area of the Wupper and for treating the sewage produced by some 1.5 million inhabitants and industrial discharges. For more than 75 years, the Wupperverband has concentrated on managing the basin of its river, a modern, holistic approach that has been underscored by the Water Framework Directive.
The Wupperverband has a number of main tasks in the context of its holistic, sustainable approach to river basin management. These include wastewater treatment by eleven wastewater treatment plants, flood protection and low water replenishment by measures such as the operation of nine dams, the provision of drinking water from the “Große Dhünn” reservoir, one of Germany's largest drinking water reservoirs, and the maintenance and ecological development of the river systems.
Initially, attempts were made to overcome the growing problems of water pollution and flooding using technical measures. Structures were built in and on the rivers. Nowadays, the limits of a water management approach based solely on civil engineering solutions have to a large extent already been reached. A holistic approach to water management concentrating more on causes and pollution sources is called for if rivers are to be used in a sustainable way without causing unacceptable adverse impact.
In the course of river basin management, large volumes of valuable geographic data are collected both by the association and by its members. The joint use of this body of data is of considerable interest.
The European Water Framework Directive (WFD), which came into force on 22 December 2000, has posed considerable challenges for the water industry.
This is already clear from the key elements of the Directive, including:
- the requirement for plans of action and management plans,
- the requirement for the holistic, sustainable management of river basins from the source to the estuary,
- the requirement for good ecological condition,
- the prohibition of deterioration,
- the requirement for the active participation of the "water players" (users of a river and interest groups),
- monitoring / keeping of historic records of water basin management in the catchment area,
- obligation to report the results to the EU.
However, according to Moss (1999), not only technical but also organizational problems must be overcome in connection with the implementation of the WFD. These include:
- "Problems of fit": these are problems of incompatibility between the organization responsible and the river basin considered. Basic hypothesis: the greater the compatibility between the organization and its geographic area, the greater its effectiveness.
- "Problems of interplay": these are the problems of interaction between the various organizations in connection with tasks which overlap or are interdependent. Basic hypothesis: the effectiveness of an organization depends not only on its internal characteristics but also on interplay with other institutions.
- "Problems of scale": these are the problems associated with applying results to other areas. Basic hypothesis: results can only be effectively applied to other areas and time periods if the special mode of operation and legitimacy of local and regional institutions are taken into consideration.
– a Strategic Tool for Effective River Basin Management in the Context of the EU Water Framework Directive
For the Wupperverband, the EU Water Framework directive does not mean a reorientation of its water industry activities but rather a confirmation of the approach which it had already adopted. This approach has now been reinforced by integration into a European context:
The Wupperverband will continue to:
- consider the river, its tributaries, banks and meadows, indeed its entire catchment area, as a whole system;
- apply a holistic approach; individual processes and issues must be considered in the overall context of the water industry;
- plan, liaise and optimize across the boundaries of local authorities and individual competencies;
- harmonize measures taken in different areas with each other with a view to ensuring the most efficient use of the resources available and the maximum benefit to the environment.
In this context, the Wupperverband operates a map server which makes water and wastewater information held in the river basin geographic information system of the Wupperverband (FluGGS Wupper) available to members and the public. Thus FluGGS forms an information and communication interface for those connected with the water industry. In future, there are plans to develop FluGGS into a flood information system in cooperation with the members.
In addition, the system is being developed into an information system shared by several bodies on the basis of the Open GIS Consortium (OGC) standards: the information available with the various institutes and in a wide variety of information systems will be networked via the internet. This will ensure that the user will always have automatic access to the latest data available with the various institutes.The complex process of integrating data into the user's own system will no longer be required (Fig. 3).
The system provides information on the location of Wupperverband facilities. However, the objective is not only to inform users of the location of a facility but to make the maximum possible amount of information available. For example, the question "what other facilities are available at the site?", can be very important for site planning work. In addition, it is planned to develop the digital map into a portal for operating information. In other words, it will be possible to call up information on facilities via the map. The information which can be called up via links from the map may include attributes such as the volume of a stormwater tank or drawings, plans or approval documents. Access to the results of measurement series will also be provided via the GIS portal.
The Wupperverband has decided to store the geometric data of its systems in an Oracle database to ensure a high level of integration between geometric and other data of facilities. In future, the ArcGIS product family from ESRI will be used for updating the data. There are also plans to link drawing production with CAD systems to the geometric data held in the database.
The Wupperverband uses a map service software package for providing information to users. This software allows an unlimited number of users to call up a map via any browser (Netscape, Internet Explorer etc.).
Users can navigate through the map, zoom in and out, search for specific objects and call up information on them. Map service technology is a cost-effective way of providing a large number of users with simple map information and has become increasingly popular in the past few years. Different map services may be provided for specific user groups.
The advantages of this innovative technology are evident. The potential applications of valuable geographic data will be multiplied. The duplication of data volumes held by different institutions will be avoided. Working time previously used for complex and time-consuming data research and migration will now be available for considerably more productive tasks.
As a result, new forms of cooperation will become possible and necessary. Since 2000, the Wupperverband has been cooperating on the first project of this type in Germany with the city of Wuppertal. The Wupperverband is now networked with a number of other bodies including the Rheinisch-Bergischer Kreis, a local authority in the area. The Wuppertal municipal utilities have also been integrated into the geographic data network.
Smaller local authorities and institutions which do not have their own comprehensive geographic information systems will also benefit from this network. For example, data from such institutions can be processed, integrated into a map service and made available to the institutions concerned via the internet (with passwords for access protection).
The association already acts as a "service provider" for a variety of institutions and intends to expand its activities in this area in the future. In addition, a company wholly owned by the Wupperverband – Wupperverbandsgesellschaft für integrale Wasserwirtschaft mbH (WIW) – offers consultancy services and support for the development of association structures, river basin management systems and water management.
The Wupperverband also offers a wide varies of engineering services for the water industry on the basis of its experience with the project cycle of design, construction, operation and optimization.
Moss, T. (1999): Die EU-Wasserrahmenrichtlinie als Beispiel eines Institutionenwandels: Forschungsbedarf und Erklärungsansätze aus politik- und raumwissenschaftlicher Sicht. In: Horsch, H., Messner, F., Kabisch, S. and Rode, M. (ed..) Flußeinzugsgebietsmanagement und Sozioökonomie. Konfliktbewertung und Lösungsansätze. UFZ Report No.30/1999, pp. 137-146.
More News and Articles
Aug 28, 2024
News
ITpipes Secures $20M to Transform Water Infrastructure Management
ITpipes announced it has secured $20 million in equity financing from Trilogy Search Partners and Miramar Equity Partners.
Known for its trusted and user-friendly platform, ITpipes …
Aug 26, 2024
News
Professor Dr.-Ing. Dietrich Stein
With deep sadness we announce the loss of our founder and partner Prof Dr Dietrich Stein at the age of 85.
Engineers around the globe are thankful for his dedication to the inventions in the fields of sewers, …
Aug 26, 2024
News
PPI Releases New Installation Guide for PE4710 Pipe
PPI’s MAB-11-2024 Covers HDPE Water Pipelines Up to 60-in. Diameter and 10,000-ft Long Pulls
Developed by the Municipal Advisory Board (MAB) – and published with the help of the members of the …
Aug 23, 2024
News
Faster wide-scale leak detection now within reach
Mass deployment of connected leak loggers is being made possible by the latest technology, writes Tony Gwynne, global leakage solutions director, Ovarro
Water companies in England and Wales are …
Aug 21, 2024
News
Kraken awakens customer service potential in water
The innovative customer service platform Kraken has made a successful transfer from energy to water. Ahead of their presentation at UKWIR’s annual conference, Portsmouth Water chief executive …
Aug 19, 2024
News
Predicting the toxicity of chemicals with AI
Researchers at Eawag and the Swiss Data Science Center have trained AI algorithms with a comprehensive ecotoxicological dataset. Now their machine learning models can predict how toxic chemicals are …
Aug 16, 2024
News
Goodbye water loss: Trenchless pipe renewal in Brazil
Pipe renewal in Brazil
How do you stop water loss through leaks in old pipe systems without major environmental impacts and restrictions? The answer: with trenchless technology, or more precisely …
Aug 14, 2024
Article
Impact of high-temperature heat storage on groundwater
In a recently launched project, the aquatic research institute Eawag is investigating how the use of borehole thermal energy storage (BTES) affects the surrounding soil, the groundwater …
Aug 12, 2024
News
Watercare completes East Coast Bays sewer link
Watercare has successfully finished the final connection on the East Coast Bays link sewer at Windsor Park in New Zealand.
Much of the East Coast Bays sewer link was installed using horizontal directional …
Aug 09, 2024
Article
Innovative water solutions for sustainable cities
Cities need to become more sustainable and use their water resources more efficiently. Managing water in local small-scale cycles is one possible solution. A new white paper by Eawag, the University …
Aug 07, 2024
Article
How digital technologies contribute to universal drinking water
Digital water technologies have an important role in ensuring universal access to safe drinking water by 2030, that is according to a new report from the World Health Organisation. …
Aug 05, 2024
News
Knowledge transfer on sustainable water infrastructure in India
India’s fast-growing cities need an efficient infrastructure for water supply and wastewater disposal. A research cooperation, is therefore supporting the development of a sustainable …
Contact
Wupperverband, Mr. A. Rondorf
42289 Wuppertal
Phone:
+49 / (0) 202 / 583 249
Fax:
+49 - (0) 202 / 583-317