The effect of external and operating conditions on a solar Lithium Bromide absorption chiller

The excessive consumption of fossil energies (electrical energy) during summer caused by the technological development involves more and more climate warming, in order to relieve insistency between electric supply and demand, heat driven absorption chillier is pretty promising, it consists on using...

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Main Authors: N. Hatraf, M. Abbas, L. Merabti
Format: Article
Language:English
Published: Renewable Energy Development Center (CDER) 2014-06-01
Series:Revue des Énergies Renouvelables
Subjects:
Online Access:https://revue.cder.dz/index.php/rer/article/view/444
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author N. Hatraf
M. Abbas
L. Merabti
author_facet N. Hatraf
M. Abbas
L. Merabti
author_sort N. Hatraf
collection DOAJ
description The excessive consumption of fossil energies (electrical energy) during summer caused by the technological development involves more and more climate warming, in order to relieve insistency between electric supply and demand, heat driven absorption chillier is pretty promising, it consists on using heat (solar) as motive energy to provide cold energy. The single effect absorption cycle is the simplest absorption cycle, it’s composed of four main components which are all heat exchangers using a diversity couple of refrigerant. Lithium bromide aqueous solution is one of many others solutions widely used in the absorption chiller for cooling purposes; it possesses several advantages over the other type of absorption systems, such as It highest coefficient of performance compared to other absorption units at the same conditions. A simple flat plat collector can assume the energy required for heating the solution in the generator. Even though, LiBr solution may cause the problem of the crystallization and the limitation of this machine on cooling did not affect the economical aspect of LiBr absorption chiller. The main aim of this article is to study the effect of thermal and environmental parameters each compound of an absorption chiller which produce a cool power equal to 1 kW.
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spelling doaj.art-b7c0220480ff496e9674985032749d4a2022-12-21T23:11:38ZengRenewable Energy Development Center (CDER)Revue des Énergies Renouvelables1112-22422716-82472014-06-01172301 – 308301 – 308444The effect of external and operating conditions on a solar Lithium Bromide absorption chillerN. Hatraf0M. Abbas1L. Merabti2Unité de Développement des Equipements Solaires, UDES Centre de développement des Energies Renouvelables, CDER 42004, Tipaza, AlgeriaUnité de Développement des Equipements Solaires, UDES Centre de développement des Energies Renouvelables, CDER 42004, Tipaza, AlgeriaUnité de Développement des Equipements Solaires, UDES Centre de développement des Energies Renouvelables, CDER 42004, Tipaza, AlgeriaThe excessive consumption of fossil energies (electrical energy) during summer caused by the technological development involves more and more climate warming, in order to relieve insistency between electric supply and demand, heat driven absorption chillier is pretty promising, it consists on using heat (solar) as motive energy to provide cold energy. The single effect absorption cycle is the simplest absorption cycle, it’s composed of four main components which are all heat exchangers using a diversity couple of refrigerant. Lithium bromide aqueous solution is one of many others solutions widely used in the absorption chiller for cooling purposes; it possesses several advantages over the other type of absorption systems, such as It highest coefficient of performance compared to other absorption units at the same conditions. A simple flat plat collector can assume the energy required for heating the solution in the generator. Even though, LiBr solution may cause the problem of the crystallization and the limitation of this machine on cooling did not affect the economical aspect of LiBr absorption chiller. The main aim of this article is to study the effect of thermal and environmental parameters each compound of an absorption chiller which produce a cool power equal to 1 kW.https://revue.cder.dz/index.php/rer/article/view/444solar energycoolinglibrexchangermodelling
spellingShingle N. Hatraf
M. Abbas
L. Merabti
The effect of external and operating conditions on a solar Lithium Bromide absorption chiller
Revue des Énergies Renouvelables
solar energy
cooling
libr
exchanger
modelling
title The effect of external and operating conditions on a solar Lithium Bromide absorption chiller
title_full The effect of external and operating conditions on a solar Lithium Bromide absorption chiller
title_fullStr The effect of external and operating conditions on a solar Lithium Bromide absorption chiller
title_full_unstemmed The effect of external and operating conditions on a solar Lithium Bromide absorption chiller
title_short The effect of external and operating conditions on a solar Lithium Bromide absorption chiller
title_sort effect of external and operating conditions on a solar lithium bromide absorption chiller
topic solar energy
cooling
libr
exchanger
modelling
url https://revue.cder.dz/index.php/rer/article/view/444
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