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Numerical modelling of thermal distribution control in a furnace

Application of control to heat treatment processes helps to achieve the desired mechanical properties of materials but improper controller design is a major problem causing short lifespan of components of locally made furnaces. In this study, the numerical control of the temperature distribution wit...

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Published: 2018
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LEADER 00000njm a2000000a 4500
001 oai:repository.ui.edu.ng:123456789/9580
042 |a dc 
720 |a Petinrin, M. O.  |e author 
720 |a Ajide, O. O.  |e author 
720 |a Dare, A. A.  |e author 
720 |a Oyewola, O. M.  |e author 
720 |a Ismail, O. S.  |e author 
260 |c 2018 
520 |a Application of control to heat treatment processes helps to achieve the desired mechanical properties of materials but improper controller design is a major problem causing short lifespan of components of locally made furnaces. In this study, the numerical control of the temperature distribution within a furnace cavity was carried out using COMSOL Multiphysics and Simulink. Six sensor points within the furnace cavity (with and without specimen) were selected and each point was consecutively used to observe the time response of the sensor to the desired temperature. The results from the time response analysis indicated uneven temperature distribution within the furnace with points located at the corners of the furnace recording the highest temperature rise while points at the centre of the furnace or within the specimen having the lowest temperature. Thus, the best position for a sensor is at any corner of the furnace to protect the components of the furnace from damage. 
024 8 |a 2320-0847 
024 8 |a 2320-0936 
024 8 |a ui_art_petinrin_numerical_2018 
024 8 |a American Journal of Engineering Research 7(8), pp. 242-253 
024 8 |a http://ir.library.ui.edu.ng/handle/123456789/9580 
653 |a Thermal controller 
653 |a Sensor 
653 |a Furnace 
653 |a Heating element 
653 |a Heat flux 
245 0 0 |a Numerical modelling of thermal distribution control in a furnace