DocumentCode :
1942819
Title :
Simulation analysis of longitudinal ventilation system with jet fan speed control for MPC strategy in a road tunnel
Author :
Tan, Z. ; Huang, Z.Y. ; Wu, K. ; Xu, L.T.
Author_Institution :
Inst. of Transp. Eng., Zhejiang Univ., Hangzhou, China
fYear :
2012
fDate :
16-19 Sept. 2012
Firstpage :
1471
Lastpage :
1476
Abstract :
To make the longitudinal ventilation systems more efficient and energy saving in road tunnels, it is being combined with typical model predictive control (MPC) strategies. Good application of such method is based on a comprehensive understanding of the system characteristics. Using CFD (Computational Fluid Dynamics) simulation, step response model is chosen to describe the dynamic behaviors of the system in a road tunnel with comprehensive health-related indexes which is difficult to obtain by field measurement. The results show that the `Fan Model´, which characterizes the effect of jet speed on CO (carbon monoxide) concentration, is approximately bilinear within fan´s economical working range and system settling time is longer when jet speed decreases than it increases. The `Tunnel tube model´, which characterizes the effect of traffic intensity on CO concentration, links to traffic flow features, and has a similar settling time in normal operation and a traffic-speed-related delay time when maximum CO concentration is considered. This can provide guidance or index to control the tunnel ventilation system economically and useful data to implement MPC strategy in the system.
Keywords :
computational fluid dynamics; fans; predictive control; road traffic; step response; tunnels; velocity control; ventilation; CFD simulation; MPC strategy; carbon monoxide concentration; comprehensive health-related index; computational fluid dynamics; dynamic behaviors; energy saving; fan model; field measurement; jet fan speed control; jet speed; longitudinal ventilation systems; model predictive control; normal operation; road tunnels; simulation analysis; step response model; system characteristics; system settling time; traffic flow features; traffic intensity; traffic-speed-related delay time; tunnel tube model; tunnel ventilation system; Analytical models; Fans; Indexes; Roads; Vehicles; Velocity control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Transportation Systems (ITSC), 2012 15th International IEEE Conference on
Conference_Location :
Anchorage, AK
ISSN :
2153-0009
Print_ISBN :
978-1-4673-3064-0
Electronic_ISBN :
2153-0009
Type :
conf
DOI :
10.1109/ITSC.2012.6338809
Filename :
6338809
Link To Document :
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