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Real time control of the integrated urban wastewater system using simultaneously simulating surrogate models.

Jurgen Meirlaen, J VAN ASSEL and Peter Vanrolleghem (2002) WATER SCIENCE AND TECHNOLOGY. 45(3). p.109-116
Please use this url to cite or link to this publication:
author
organization
year
type
journalArticle
publication status
published
subject
journal title
WATER SCIENCE AND TECHNOLOGY
Water Sci. Technol.
volume
45
issue
3
pages
109-116 pages
Web of Science type
Article
Web of Science id
000174350200013
JCR category
ENGINEERING, ENVIRONMENTAL
JCR impact factor
0.661 (2002)
JCR rank
15/37 (2002)
JCR quartile
2 (2002)
ISSN
0273-1223
language
English
UGent publication?
yes
classification
A1
id
157748
handle
http://hdl.handle.net/1854/LU-157748
date created
2004-01-14 13:39:00
date last changed
2008-02-22 22:47:23
@article{157748,
  author       = {Meirlaen, Jurgen and VAN ASSEL, J and Vanrolleghem, Peter},
  issn         = {0273-1223},
  journal      = {WATER SCIENCE AND TECHNOLOGY},
  language     = {eng},
  number       = {3},
  pages        = {109--116},
  title        = {Real time control of the integrated urban wastewater system using simultaneously simulating surrogate models.},
  volume       = {45},
  year         = {2002},
}

Chicago
Meirlaen, Jurgen, J VAN ASSEL, and Peter Vanrolleghem. 2002. “Real Time Control of the Integrated Urban Wastewater System Using Simultaneously Simulating Surrogate Models.” Water Science and Technology 45 (3): 109–116.
APA
Meirlaen, J., VAN ASSEL, J., & Vanrolleghem, P. (2002). Real time control of the integrated urban wastewater system using simultaneously simulating surrogate models. WATER SCIENCE AND TECHNOLOGY, 45(3), 109–116.
Vancouver
1.
Meirlaen J, VAN ASSEL J, Vanrolleghem P. Real time control of the integrated urban wastewater system using simultaneously simulating surrogate models. WATER SCIENCE AND TECHNOLOGY. 2002;45(3):109–16.
MLA
Meirlaen, Jurgen, J VAN ASSEL, and Peter Vanrolleghem. “Real Time Control of the Integrated Urban Wastewater System Using Simultaneously Simulating Surrogate Models.” WATER SCIENCE AND TECHNOLOGY 45.3 (2002): 109–116. Print.