Conceptual model of numerical approximations using sensors for radiative heat transfer in ethylene cracker furnace
A conceptual model of integrating a sensor network and the radiative heat transfer equation is developed and presented in this paper. The idea is to improve the numerical scheme of solving the radiative heat transfer equation by providing the exact values of temperature from the sensor network to ob...
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Pustaka Aman Press Sdn Bhd
2010
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my.utm.317232017-10-13T10:28:37Z http://eprints.utm.my/id/eprint/31723/ Conceptual model of numerical approximations using sensors for radiative heat transfer in ethylene cracker furnace Abas, Zuraida Abal Salleh, Shaharuddin Sapar, Sakilah QA Mathematics A conceptual model of integrating a sensor network and the radiative heat transfer equation is developed and presented in this paper. The idea is to improve the numerical scheme of solving the radiative heat transfer equation by providing the exact values of temperature from the sensor network to obtain a set of intensity boundary values. We propose unisensor and multi-sensor models based on a triangular mesh model with points at its boundaries and coils as their pivot elements for the network. The paper concentrates on the two-dimensional cross-sectional model only with several U-bend reactor tubes in the ethylene furnace as an initial phase of constructing a complete simulation in the real furnace design. Pustaka Aman Press Sdn Bhd 2010 Article PeerReviewed text/html en http://eprints.utm.my/id/eprint/31723/2/journalguide.doc application/pdf en http://eprints.utm.my/id/eprint/31723/3/ZuraidaAAbas2010_Conceptualmodelofnumericalapproximationsusingsensorsforradiativeheat.pdf Abas, Zuraida Abal and Salleh, Shaharuddin and Sapar, Sakilah (2010) Conceptual model of numerical approximations using sensors for radiative heat transfer in ethylene cracker furnace. Jurnal Karya Asli Lorekan Ahli Matematik (KALAM), 3 (1). pp. 1-8. ISSN 1985-5222 |
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QA Mathematics Abas, Zuraida Abal Salleh, Shaharuddin Sapar, Sakilah Conceptual model of numerical approximations using sensors for radiative heat transfer in ethylene cracker furnace |
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A conceptual model of integrating a sensor network and the radiative heat transfer equation is developed and presented in this paper. The idea is to improve the numerical scheme of solving the radiative heat transfer equation by providing the exact values of temperature from the sensor network to obtain a set of intensity boundary values. We propose unisensor and multi-sensor models based on a triangular mesh model with points at its boundaries and coils as their pivot elements for the network. The paper concentrates on the two-dimensional cross-sectional model only with several U-bend reactor tubes in the ethylene furnace as an initial phase of constructing a complete simulation in the real furnace design. |
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Article |
author |
Abas, Zuraida Abal Salleh, Shaharuddin Sapar, Sakilah |
author_facet |
Abas, Zuraida Abal Salleh, Shaharuddin Sapar, Sakilah |
author_sort |
Abas, Zuraida Abal |
title |
Conceptual model of numerical approximations using sensors for radiative heat transfer in ethylene cracker furnace |
title_short |
Conceptual model of numerical approximations using sensors for radiative heat transfer in ethylene cracker furnace |
title_full |
Conceptual model of numerical approximations using sensors for radiative heat transfer in ethylene cracker furnace |
title_fullStr |
Conceptual model of numerical approximations using sensors for radiative heat transfer in ethylene cracker furnace |
title_full_unstemmed |
Conceptual model of numerical approximations using sensors for radiative heat transfer in ethylene cracker furnace |
title_sort |
conceptual model of numerical approximations using sensors for radiative heat transfer in ethylene cracker furnace |
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Pustaka Aman Press Sdn Bhd |
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2010 |
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http://eprints.utm.my/id/eprint/31723/2/journalguide.doc http://eprints.utm.my/id/eprint/31723/3/ZuraidaAAbas2010_Conceptualmodelofnumericalapproximationsusingsensorsforradiativeheat.pdf http://eprints.utm.my/id/eprint/31723/ |
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