Urban flooding events which are often caused by a lack of capacity of the urban collecting system, can be a risk to human life. The CENTAUR project is developing an innovative, cost effective, local and autonomous sewer flow control system to reduce urban flood risk. The CENTAUR system consists of a flow control device controlled by a Fuzzy Logic algorithm to allow upstream storage capacity to be used to reduce downstream flood risk. Results will be presented from a modelling study of this system, based on the sewer network in the city of Coimbra, Portugal. These results show the ability of the system to decrease water level in a critical location, without increasing flood risk upstream. CENTAUR is an Innovation action funded by European U...
In the last years, urban stormwater discharges have been recognised as one of the main causes of the...
The control strategy for sewer pumping stations currently used by Anglian Water, and most other UK w...
12th International Conference on Computing and Control for the Water Industry, CCWI2013This is the f...
Urban flooding events which are often caused by a lack of capacity of the urban collecting system, c...
The aim of the CENTAUR project (Cost Effective Neural Technique for Alleviation of Urban flood Risk)...
This paper will describe and present results for a local flood risk reduction system which utilises ...
The effects of climate change and urbanisation are putting increasing pressure on wastewater network...
CENTAUR aims to provide an innovative, cost effective, local autonomous data driven in-sewer flow co...
Paper presented in the 14th Computing and Control for Water Industry (CCWI) 2016 Conference
This paper proposes a data driven (Fuzzy Logic) control algorithm for use in a real time control (RT...
Urban flooding damages properties, causes economic losses and can seriously threaten public health. ...
One of the most cost effective methods for limiting sewer overflows and flooding is to actively cont...
One of the most cost effective methods for limiting sewer overflows and flooding is to actively cont...
This paper shows the extent to which the application of real-time control techniques can help in red...
Flooding is an unwelcome and increasingly frequent phenomenon in many urban areas. However, as recen...
In the last years, urban stormwater discharges have been recognised as one of the main causes of the...
The control strategy for sewer pumping stations currently used by Anglian Water, and most other UK w...
12th International Conference on Computing and Control for the Water Industry, CCWI2013This is the f...
Urban flooding events which are often caused by a lack of capacity of the urban collecting system, c...
The aim of the CENTAUR project (Cost Effective Neural Technique for Alleviation of Urban flood Risk)...
This paper will describe and present results for a local flood risk reduction system which utilises ...
The effects of climate change and urbanisation are putting increasing pressure on wastewater network...
CENTAUR aims to provide an innovative, cost effective, local autonomous data driven in-sewer flow co...
Paper presented in the 14th Computing and Control for Water Industry (CCWI) 2016 Conference
This paper proposes a data driven (Fuzzy Logic) control algorithm for use in a real time control (RT...
Urban flooding damages properties, causes economic losses and can seriously threaten public health. ...
One of the most cost effective methods for limiting sewer overflows and flooding is to actively cont...
One of the most cost effective methods for limiting sewer overflows and flooding is to actively cont...
This paper shows the extent to which the application of real-time control techniques can help in red...
Flooding is an unwelcome and increasingly frequent phenomenon in many urban areas. However, as recen...
In the last years, urban stormwater discharges have been recognised as one of the main causes of the...
The control strategy for sewer pumping stations currently used by Anglian Water, and most other UK w...
12th International Conference on Computing and Control for the Water Industry, CCWI2013This is the f...