DocumentCode :
2833062
Title :
A computer tool for designing solar-thermoelectric power generation system
Author :
Vatcharasathien, N. ; Khedari, Joseph ; Hirunlabh, Jongiit ; Daguenet, M.
Author_Institution :
Building Sci. Res. Center, King Mongkut´´s Inst. of Technol., Bangkok, Thailand
fYear :
2003
fDate :
17-21 Aug. 2003
Firstpage :
623
Lastpage :
626
Abstract :
This paper presents a computer tool to design solar-thermoelectric power generation plant. The system is composed of truncated compound parabolic collectors (CPC) with a flat receiver, flat plate collectors, thermoelectric modules and appropriate connecting pipes and control devices. The design tool uses TRNSYS with Ilsibat program with a new component we developed for the thermoelectric modules. The main input data of the system are the specification of TE modules, hot side temperature of thermoelectric modules, and the desired power output. An example of the design using a truncated compound parabolic collectors and flat plate collectors is reported and discussed for various slope angle and the half-acceptance angle of CPC. To minimize system cost, seasonal adjustment of the slope angle between 0° and 30° can give relatively high power output using Bangkok ambient condition. Based on simulation output, 500 W solar-thermoelectric power generator was designed. Measured data showed reasonable agreement with the model outputs. Therefore, the TRNSYS software and the developed thermoelectric component offers an extremely powerful tool for the design and performance analysis of solar thermoelectric power generation plant.
Keywords :
solar absorber-convertors; thermoelectric conversion; 500 W; Ilsibat program; TRNSYS; connecting pipes; control devices; designing solar-thermoelectric power generation system; flat plate collectors; flat receiver; half-acceptance angle; hot side temperature; power output; seasonal adjustment; slope angle; system cost; thermoelectric modules; truncated compound parabolic collectors; Control systems; Costs; Joining processes; Power generation; Power system modeling; Solar power generation; Tellurium; Temperature; Thermoelectric devices; Thermoelectricity;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Thermoelectrics, 2003 Twenty-Second International Conference on - ICT
Print_ISBN :
0-7803-8301-X
Type :
conf
DOI :
10.1109/ICT.2003.1287590
Filename :
1287590
Link To Document :
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