Title :
Optimal energy conversion through performing compressed air systems
Author :
Anglani, Nonna ; Bossi, Michele ; Quartarone, Giusi
Author_Institution :
Dipt. di Ing. Ind. e dellInformazione, Univ. of Pavia, Pavia, Italy
Abstract :
The paper illustrates the simulation activities going on within the LABAC (laboratory of energy performance of compressed air systems) at the University of Pavia. The scope is to build up a simulator (provisionally called ModSAC1), based on a comprehensive energy model, enabling the end-user both to improve the system efficiency, allowing modifications on the system configuration and/or the use of alternative devices, and to properly size a pneumatic network. The final use is both for educational and test purpose. The simulator represents the laboratory plant, where the generation unit, the receiver, the cleaning up equipment and the distribution of compressed air are set in place. For the modeling, the Xcos application, graphical Scilab interface, has been used. The models validation was performed and the accuracy of the simulator models will be proved. Moreover to emphasize the potential derived by the use of this simulator, the role of increasing storage unit/receiver is investigated with respect to the system energy consumption. Several testings have been performed. The simulation reported in this paper has been carried out for 4000 s and two different configurations are investigated: the living one with 0.5 m3 vs. the alternative 6.5 m3 storage tank. A detailed approach to the identification of all equipment is proposed and energy and power considerations are reported.
Keywords :
compressed air systems; energy consumption; graphical user interfaces; power apparatus; program verification; receivers; LABAC; ModSAC; University of Pavia; Xcos application; cleaning up equipment; comprehensive energy model; compressed air distribution; compressed air systems; educational purpose; equipment identification; generation unit; graphical Scilab interface; laboratory of energy performance of compressed air systems; laboratory plant; models validation; optimal energy conversion; pneumatic network; receiver; simulation activities; simulator models; storage tank; storage unit; system configuration; system efficiency; system energy consumption; test purpose; Argon; Atmospheric modeling; Gold; Heating; Lubricants; Receivers; Testing;
Conference_Titel :
IECON 2012 - 38th Annual Conference on IEEE Industrial Electronics Society
Conference_Location :
Montreal, QC
Print_ISBN :
978-1-4673-2419-9
Electronic_ISBN :
1553-572X
DOI :
10.1109/IECON.2012.6389528