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Research Article Open access CC BY 4.0

Experimental Study of Hygrothermal Exchanges in an Evaporative Heat Exchanger Based on Fired Clay Plates for Air Cooling in Hot and Dry Climates

Salifou Cisse, Abdoul Aziz Ouiminga, Arnaud Ouermi, Boureima Kaboré, Sié Kam, Dieudonné Joseph Bathiebo

Physical Science International Journal · pp. 123–132 · Published 23 Jul 2025

10.9734/psij/2025/v29i4894

Abstract

In hot and dry climates like Burkina Faso, conventional air conditioning is energy-intensive and costly, accounting for 20% of global energy consumption according to the International Energy Agency. The "Argiclim" evaporative heat exchanger, developed at the Renewable Thermal Energy Laboratory (L.E.T.RE) of Joseph KI-ZERBO University, uses porous fired clay plates to cool air through evaporation. Tested from April to June 2023, the prototype (18x18x2 cm, PVC casing) achieved a saturation efficiency of 92%. It reduced the temperature from 42°C to 29°C and increased relative humidity from 30% to 95% under conditions with an inlet air temperature of 42°C and 30% relative humidity, with a 2 cm plate spacing. Measurements using type K thermocouples (accuracy ±1°C) and hygrometers showed a 15°C temperature drop and a relative humidity of 95% at 2 cm from the duct. Simulations using Matlab, based on Luikov’s equations, validated the experimental results (deviations <5%). Despite high outlet humidity and water dependency, "Argiclim" offers a sustainable and cost-effective alternative to traditional air conditioners, leveraging local materials for accessible thermal comfort in Sahelian regions.

Heat exchanger evaporation fired clay thermal efficiency hygrothermal hot and dry climate

Cited by 3

Optimization of Design Parameters of a Fired Clay Plate Evaporative Heat Exchanger for Air Cooling in Hot and Dry Climates

Salifou Cisse, Benjamin Kiema, B. Kaboré · IRA-International Journal of Applied Sciences (ISSN 2455-4499) · 2026

Modeling of Coupled Heat and Mass Transfer for the Optimization of Evaporative Cooling Using a Porous Clay Plate

Salifou Cisse, Windnigda Zoungrana, Jacques Nébié · American Journal of Modern Physics · 2026

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