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The future of WRRF ...
The future of WRRF modelling - Outlook and challenges
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- Regmi, P. (författare)
- Brown and Caldwell, USA
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- Miller, M. (författare)
- Brown and Caldwell, USA,Ghent University
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- Jimenez, J. (författare)
- Brown and Caldwell, USA
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visa fler...
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- Stewart, H. (författare)
- Jacobs, USA,Jacobs, Denver
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- Johnson, B. (författare)
- Jacobs, USA,Jacobs, Denver
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- Amerlinck, Y. (författare)
- Ghent University, Belgium
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- Volcke, E. I. P. (författare)
- Ghent University, Belgium
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- Arnell, Magnus (författare)
- Lunds universitet,RISE,Energi och cirkulär ekonomi,Lund University, Sweden,Industriell elektroteknik och automation,Institutionen för biomedicinsk teknik,Institutioner vid LTH,Lunds Tekniska Högskola,Industrial Electrical Engineering and Automation,Department of Biomedical Engineering,Departments at LTH,Faculty of Engineering, LTH,Research Institutes of Sweden (RISE)
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- García, P. J. (författare)
- Atkins, UK,Atkins, Bristol
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- Maere, T. (författare)
- Université Laval, Canada; Québec Water Research Center, Canada
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- Torfs, E. (författare)
- Université Laval, Canada; Québec Water Research Center, Canada
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- Vanrolleghem, P. A. (författare)
- Université Laval, Canada; Québec Water Research Center, Canada
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- Miletić, I. (författare)
- InCTRL Solutions Inc, Canada
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- Rieger, L. (författare)
- InCTRL Solutions Inc, Canada
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- Schraa, O. (författare)
- InCTRL Solutions Inc, Canada
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- Samstag, R. (författare)
- Bainbridge Island, USA,No affiliation available (private)
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- Santoro, D. (författare)
- Trojan Technologies, Canada,Trojan Technologies Inc.
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- Snowling, S. (författare)
- Hydromantis ESS Inc, Canada,Hydromantis Environmental Software Solutions, Inc.
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- Takács, I. (författare)
- Dynamita, France,Dynamita, Nyons
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- Villez, Kris (författare)
- ETH Zürich,Eawag: Swiss Federal Institute of Aquatic Science and Technology
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- Weijers, Stefan (författare)
- Waterschap De Dommel
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- Grau, Paloma (författare)
- University of Navarra
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- Rosso, Diego (författare)
- University of California, Irvine
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(creator_code:org_t)
- 2018-12-07
- 2019
- Engelska.
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Ingår i: Water Science and Technology. - : IWA Publishing. - 0273-1223 .- 1996-9732. ; 79:1, s. 3-14
- Relaterad länk:
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https://iwaponline.c...
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http://dx.doi.org/10...
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https://urn.kb.se/re...
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https://doi.org/10.2...
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https://lup.lub.lu.s...
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Abstract
Ämnesord
Stäng
- The wastewater industry is currently facing dramatic changes, shifting away from energy-intensive wastewater treatment towards low-energy, sustainable technologies capable of achieving energy positive operation and resource recovery. The latter will shift the focus of the wastewater industry to how one could manage and extract resources from the wastewater, as opposed to the conventional paradigm of treatment. Debatable questions arise: Can the more complex models be calibrated, or will additional unknowns be introduced? After almost 30 years using well-known International Water Association (IWA) models, should the community move to other components, processes, or model structures like 'black box' models, computational fluid dynamics techniques, etc.? Can new data sources - e.g. on-line sensor data, chemical and molecular analyses, new analytical techniques, off-gas analysis - keep up with the increasing process complexity? Are different methods for data management, data reconciliation, and fault detection mature enough for coping with such a large amount of information? Are the available calibration techniques able to cope with such complex models? This paper describes the thoughts and opinions collected during the closing session of the 6th IWA/WEF Water Resource Recovery Modelling Seminar 2018. It presents a concerted and collective effort by individuals from many different sectors of the wastewater industry to offer past and present insights, as well as an outlook into the future of wastewater modelling.
Ämnesord
- TEKNIK OCH TEKNOLOGIER -- Samhällsbyggnadsteknik -- Vattenteknik (hsv//swe)
- ENGINEERING AND TECHNOLOGY -- Civil Engineering -- Water Engineering (hsv//eng)
Nyckelord
- activated sludge model
- big-data
- computational fluid dynamics
- dynamic simulation
- modelling
- wastewater
- Activated sludge process
- Big data
- Chemical analysis
- Computer simulation
- Fault detection
- Information management
- Model structures
- Models
- Water distribution systems
- Water resources
- Calibration techniques
- Computational fluid dynamics technique
- Data reconciliation
- International Water Association
- Sustainable technology
- Wastewater industry
- Wastewater modelling
- Wastewater treatment
- activated sludge model
- big-data
- computational fluid dynamics
- dynamic simulation
- modelling
- wastewater
Publikations- och innehållstyp
- ref (ämneskategori)
- art (ämneskategori)
Hitta via bibliotek
Till lärosätets databas
- Av författaren/redakt...
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Regmi, P.
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Miller, M.
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Jimenez, J.
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Stewart, H.
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Johnson, B.
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Amerlinck, Y.
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visa fler...
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Volcke, E. I. P.
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Arnell, Magnus
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García, P. J.
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Maere, T.
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Torfs, E.
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Vanrolleghem, P. ...
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Miletić, I.
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Rieger, L.
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Schraa, O.
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Samstag, R.
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Santoro, D.
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Snowling, S.
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Takács, I.
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Villez, Kris
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Weijers, Stefan
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Grau, Paloma
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Rosso, Diego
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visa färre...
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