DocumentCode
3329283
Title
Numerical study of the influence of plate characteristics of a thermosiphon on the performance in a permanent laminar regime
Author
Semega, Par Y. ; Mbow, Ch ; Suh, S. Jik ; Daguenet, M.
Author_Institution
Lab. de Thermodynamique et Energetique, Perpignan Univ., France
fYear
2000
fDate
2000
Firstpage
74
Lastpage
79
Abstract
The authors study, with the aid of an implicit method of finite difference, natural, laminar, permanent and bidimensional convection, in a fluid situated between two vertical plates consisting of porous material (granular type) saturated with air and crossed by constant density heat flux. In the channel, it admits the hypothesis of the film limit, utilising the Bernoulli equation at the entrance and considers the constant pressure at the exit whereas, in the porous material, it adopts the Brinkman model. The calculations show that for the large values of permeability, the plates behave like walls filled with air and, for small values, like a solid material. If one wants to obtain elevated ventilation outputs, it is preferable to use a rather long thermosiphon, again with solid plates whose thermal conductivity is large; if one desires elevated output temperatures, it is more judicious to use strongly permeable plates, more particularly for large values of modified Grashof number
Keywords
confined flow; finite difference methods; flow through porous media; laminar flow; natural convection; thermal conductivity; Bernoulli equation; Brinkman model; bidimensional convection; constant density heat flux; elevated output temperatures; film limit; finite difference; granular type material; laminar convection; modified Grashof number; natural convection; numerical simulation; permanent convection; permanent laminar regime; permeability; plate characteristics; porous material; solid material; strongly permeable plates; thermal conductivity; thermosiphon; ventilation outputs; vertical plates; Educational institutions; Irrigation; Ventilation;
fLanguage
English
Publisher
ieee
Conference_Titel
Environment and Solar, 2000 Mediterranean Conference for
Conference_Location
Beirut
Print_ISBN
0-7803-7117-8
Type
conf
DOI
10.1109/CMPLES.2000.939865
Filename
939865
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