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Mahmoud Bourouis

Rovira i Virgili University

Av. Països Catalans No. 26

Tarragona, Tarragona 43007

Spain

SCHOLARLY PAPERS

4

DOWNLOADS

212

TOTAL CITATIONS

0

Scholarly Papers (4)

1.

A Comparative Assessment of the integration of Solar Chimney and Phase Change Materials in traditional Buildings for Passive Cooling in Arid Climates

Number of pages: 51 Posted: 18 Sep 2025
University of blida 1, affiliation not provided to SSRN, University of Liège and Rovira i Virgili University
Downloads 80 (816,709)

Abstract:

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passive cooling, Solar Chimney, Phase change materials (PCMs), Hot-arid climate, Building energy simulation, natural ventilation

2.

Energy Efficiency and Thermal Comfort of Buildings in Arid Climates Employing Insulating Material Produced from Date Palm Waste Matter

Number of pages: 51 Posted: 10 May 2023
affiliation not provided to SSRN, Western Norway University of Applied Sciences, affiliation not provided to SSRN and Rovira i Virgili University
Downloads 63 (951,658)

Abstract:

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Thermal conductivity, natural insulation, date palm material, building heat loss, arid climate.

3.

Improving Efficiency of Solar Photovoltaic Systems through Smart Cooling in Arid Environments: A Case Study from Southern Algeria

Number of pages: 28 Posted: 19 Sep 2025
affiliation not provided to SSRN, affiliation not provided to SSRN, Université de Paris and Rovira i Virgili University
Downloads 35 (1,263,436)

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Photovoltaic panel, Smart cooling, Efficiency improvement, Water spraying system, Desert climate.

4.

Heat and Mass Transfer Characteristics of a Horizontal Tube Falling Film Absorber Working with Water/Lithium Bromide and Ionic Liquid as an Anti-Crystallization Additive

Number of pages: 25 Posted: 27 Dec 2024
Hussain A. Tariq, Mahmoud Bourouis and Alberto CORONAS
Universitat Rovira i Virgili, Rovira i Virgili University and Universitat Rovira i Virgili
Downloads 34 (1,277,121)

Abstract:

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horizontal tube, falling film absorber, absorber thermal conditions, water/LiBr, ionic liquids, anti-crystallization additive, heat and mass transfer performance