Theoretical study of an NH3–H2O absorption chiller powered by a linear Fresnel system modelled by combining ray tracing and CFD

Author:

Dione Fatimata,Thiam Ababacar,Cisse ElHadji I.ORCID,Diouf Djicknoum,Maiga Amadou Seidou

Publisher

Elsevier BV

Subject

General Engineering

Reference38 articles.

1. Fluides frigorigènes, HCFC, HFC supergaz effet de serre environnement 2016, disponible sur Fluides frigorigènes, supergaz, HCFC, HFC effet de serre (http://www.picbleu.fr) (last access: 12/04/2022).

2. A review on the recent progress made on solar photovoltaic in selected countries of sub-Saharan Africa;Abubakar Mas’ud;Renew. Sustain. Energy Rev.,2016

3. Analysis of working parameters for an ammonia-water absorption refrigeration system powered by automotive exhaust gas;Hanriot;Case Stud. Therm. Eng.,2019

4. Optimization of absorption refrigeration systems by design of experiments method;Ben Iffa;Energy Proc.,2017

5. Numerical investigation on solar absorption chiller with LiBr-H2O operating conditions and performances;Porumb;Energy Proc.,2017

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