Title of article :
POWER GENERATION FROM COMBUSTED “SYNGAS” USING HYBRID THERMOELECTRIC GENERATOR an‎d FORECASTING THE PERFORMANCE WITH ANN TECHNIQUE
Author/Authors :
Angeline, Appadurai Anitha Department of Electrical and Electronics Engineering - Karunya University, Coimbatore, India , Jayakumar, Jayaraj Department of Electrical and Electronics Engineering - Karunya University, Coimbatore, India , Asirvatham, Lazarus Godson Department of Mechanical Engineering - Karunya University, Coimbatore, India , Wongwises, Somchai Department of Mechanical Engineering - Faculty of Engineering - King Mongkut’s University of Technology Thonburi, Bangkok, Thailand
Pages :
20
From page :
2149
To page :
2168
Abstract :
Gasification and combustion of de-oiled Pongamia Pinnata seed cake is done to produce higher energy biomass waste heat “syngas” for generating power using hybrid thermoelectric generator (TEG). A test rig is fabricated and experiments conducted with synthetic oil (Therminol-55) as the heating fluid under water and aircooled methods. The hot side temperature is varied from 200 - 250ºC while the coolant temperature is maintained at 30 oC for both water and air respectively. Experimental results showed 22.27% enhancement in electric power at a constant hot side temperature of 250 ºC under water cooled method. In addition, simulation results for the above mentioned conditions using artificial neural networks (ANN) tool in MATLAB also agreed well with the sample experimental results. The performance parameters such as open circuit voltage, maximum output power and matched load resistance are forecasted using ANN upto maximum possible hot side temperature of 350ºC. Further, the financial evaluation of Biomass gasified-thermoelectric system ($0.0018/kWh and in terms of Indian currency is ₨ 0.0676/kWh) is found to be almost negligible on comparison with other available renewable energy technologies.
Keywords :
Pongamia , ANN , Hybrid , Performance Parameters , Synthetic Oil , Thermoelectric Generator , Cost Analysis
Journal title :
Journal of Thermal Engineering
Serial Year :
2018
Full Text URL :
Record number :
2577714
Link To Document :
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