Finite element computation of linearized thermoelectric effectswith p-adaptivity.

Dengan kemajuan dalam teknologi mikrosistem, penyelakuan multifizik di mana beberapa fizik berinteraksi antara sama satu lain menjadi semakin penting. Kecekapan dalam pengiraan dengan pelaksanaan kaedah unsur terhingga bagi penyelakuan ini juga menjadi semakin mencabar. Penyelidikan ini mengkaji ke...

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Main Author: Tan, Yi Fung
Format: Thesis
Language:English
Published: 2010
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Online Access:http://eprints.usm.my/42967/1/Pages_from_FINITE_ELEMENT_COMPUTATION_OF_LINEARIZED.pdf
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spelling my-usm-ep.429672018-11-22T01:59:33Z Finite element computation of linearized thermoelectric effectswith p-adaptivity. 2010-12 Tan, Yi Fung TJ1-1570 Mechanical engineering and machinery Dengan kemajuan dalam teknologi mikrosistem, penyelakuan multifizik di mana beberapa fizik berinteraksi antara sama satu lain menjadi semakin penting. Kecekapan dalam pengiraan dengan pelaksanaan kaedah unsur terhingga bagi penyelakuan ini juga menjadi semakin mencabar. Penyelidikan ini mengkaji kecekapan dalam pengiraan komputer terhadap masalah-masalah termoelektrik tiga dimensi di mana ia merangkumi dua sifat fizik iaitu suhu dan voltan. Pengiraan unsur terhingga ini telah dilaksanakan dalam pengaturcaraan komputer. With advances in microsystem technology, multiphysics simulations in which more than one physical nature are considered become increasingly important and pose challenges on the efficiency of their implementations through the finite element method (FEM). The research work was to implement an efficient yet accurate FEM computation of thermoelectric problems where two natures, heat and electric potential mutually interact. 2010-12 Thesis http://eprints.usm.my/42967/ http://eprints.usm.my/42967/1/Pages_from_FINITE_ELEMENT_COMPUTATION_OF_LINEARIZED.pdf application/pdf en public masters Universiti Sains Malaysia Pusat Pengajian Kejuruteraan Mekanikal
institution Universiti Sains Malaysia
collection USM Institutional Repository
language English
topic TJ1-1570 Mechanical engineering and machinery
spellingShingle TJ1-1570 Mechanical engineering and machinery
Tan, Yi Fung
Finite element computation of linearized thermoelectric effectswith p-adaptivity.
description Dengan kemajuan dalam teknologi mikrosistem, penyelakuan multifizik di mana beberapa fizik berinteraksi antara sama satu lain menjadi semakin penting. Kecekapan dalam pengiraan dengan pelaksanaan kaedah unsur terhingga bagi penyelakuan ini juga menjadi semakin mencabar. Penyelidikan ini mengkaji kecekapan dalam pengiraan komputer terhadap masalah-masalah termoelektrik tiga dimensi di mana ia merangkumi dua sifat fizik iaitu suhu dan voltan. Pengiraan unsur terhingga ini telah dilaksanakan dalam pengaturcaraan komputer. With advances in microsystem technology, multiphysics simulations in which more than one physical nature are considered become increasingly important and pose challenges on the efficiency of their implementations through the finite element method (FEM). The research work was to implement an efficient yet accurate FEM computation of thermoelectric problems where two natures, heat and electric potential mutually interact.
format Thesis
qualification_level Master's degree
author Tan, Yi Fung
author_facet Tan, Yi Fung
author_sort Tan, Yi Fung
title Finite element computation of linearized thermoelectric effectswith p-adaptivity.
title_short Finite element computation of linearized thermoelectric effectswith p-adaptivity.
title_full Finite element computation of linearized thermoelectric effectswith p-adaptivity.
title_fullStr Finite element computation of linearized thermoelectric effectswith p-adaptivity.
title_full_unstemmed Finite element computation of linearized thermoelectric effectswith p-adaptivity.
title_sort finite element computation of linearized thermoelectric effectswith p-adaptivity.
granting_institution Universiti Sains Malaysia
granting_department Pusat Pengajian Kejuruteraan Mekanikal
publishDate 2010
url http://eprints.usm.my/42967/1/Pages_from_FINITE_ELEMENT_COMPUTATION_OF_LINEARIZED.pdf
_version_ 1747821138389499904