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Predicting geometry of rectangular and hyperbolic fin profiles with temperature-dependent thermal properties using decomposition and evolutionary methods

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dc.contributor.author Bhowmik, A.
dc.contributor.author Singla, R.K.
dc.contributor.author Roy, P.K.
dc.contributor.author Prasad, D.K.
dc.contributor.author Das, R.
dc.contributor.author Repaka, R.
dc.date.accessioned 2016-08-18T10:04:26Z
dc.date.available 2016-08-18T10:04:26Z
dc.date.issued 2016-08-18
dc.identifier.uri http://localhost:8080/xmlui/handle/123456789/250
dc.description.abstract This work proposes the application of the Adomian decomposition method (ADM) in conjunction with the differential evolution (DE) for simultaneously estimating the dimensions of a rectangular and hyperbolic profile annular fin in order to satisfy a prescribed temperature requirement. The thermal conductivity and the surface heat transfer are assumed to be temperature-dependent. The required temperature field has been obtained using ADM for cases, involving insulated and convective boundary conditions at the tip. Then, using an inverse scheme based on DE, required fins dimensions satisfying a prescribed temperature field are estimated. Owing to the correlated nature of the unknowns, many feasible solutions have been found to lie within a given range satisfying the given temperature field. This temperature field can offer the flexibility in selecting the designing parameters. The present study is expected to be useful for selecting the dimensions of a rectangular and hyperbolic profile annular fin which can satisfy the given temperature field. en_US
dc.language.iso en_US en_US
dc.subject Thermal conductivity en_US
dc.subject Variable heat transfer coefficient en_US
dc.subject Base heat transfer coefficient en_US
dc.subject Differential evolution en_US
dc.title Predicting geometry of rectangular and hyperbolic fin profiles with temperature-dependent thermal properties using decomposition and evolutionary methods en_US
dc.type Article en_US


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