DocumentCode
2114338
Title
The simulation of the boiler-turbine power system based on VC++6.0
Author
Mei Xiong ; Rui Ma
Author_Institution
Sch. of Stat. & Math., Yunnan Univ. of Finance & Econ., Kunming, China
fYear
2013
fDate
23-25 July 2013
Firstpage
1101
Lastpage
1104
Abstract
An automatic control of the boiler-turbine system is the basic requirement of a modern power plant, and an important index of its technology. The research of the control strategies for boiler-turbine systems is meaningful in the view of both theory and practice. In order to calculate the output of the system according to its initial parameters and conditions, these control equations are solved on discrete meshes by the finite difference method. This also aims at simulating the boiler-turbine power system. This simulation has simple and beautiful interface coded by using of Microsoft VC++6.0. There are four modules: a calendar clock, the system operation and its input, and the output in main interface. The calendar clock shows real date and time. The system operation has three buttons: log, turn on and turn off. The input module is composed of a fuel switch, steam switch, water switch, and the corresponding status shown on the bar and the meter. When a hander inputs three correct groups of data in edit frames, and starts the simulated system, the data will be shown on the status bars and the meters. Furthermore, the data are changed randomly to the extent of the allowed value. The output part has the pressure and the manometer, the power and the power meter dynamo, and the highness of water and its status vision. After inputting every parameter and pressing the start button, a hander can simulate the system, and view log files recording the running situation of system.
Keywords
C++ language; boilers; control engineering computing; finite difference methods; power plants; turbines; Microsoft VC++6.0; automatic control; boiler-turbine power system; calendar clock; discrete meshes; finite difference method; fuel switch; manometer; power meter dynamo; power plant; pressure; steam switch; water switch; Clocks; Equations; Fuels; Mathematical model; Power generation; Presses; Valves; Boiler-turbine; Control; Power plant; System simulation; equation;
fLanguage
English
Publisher
ieee
Conference_Titel
Fuzzy Systems and Knowledge Discovery (FSKD), 2013 10th International Conference on
Conference_Location
Shenyang
Type
conf
DOI
10.1109/FSKD.2013.6816361
Filename
6816361
Link To Document