EN
Effect Of Water Basin Depth on The Thermal Performance of The Double-Basin Solar Still Under Iraqi Climatic Conditions
Abstract
This work investigates the effect of water depth on the productivity and thermal efficiency of a double-basin solar still (DBSS). The lower basin measured 0.4 x 1 m, while the upper basin, installed above the lower basin’s glass cover, consisted of six sub-basins. Water depths in both the lower and upper basins were studied, ranging from 10 to 30 mm. The double-basin solar still DBSS configurations are denoted by two values, where the first value represents the lower-basin water depth and the second value represents the upper-basin water depth. For comparison, a single-basin still with base dimensions identical to the two-basin still was constructed. The experimental results obtained under the climatic conditions of Baghdad, Iraq (33.3° N, 44.3° E) in October 2025 are as follows: The best DBSS configuration was the 10-10 mm DBSS, which produced 8.75 L/m²·day and 83.24% daily thermal efficiency. The minimum productivity and daily thermal efficiency were for the 30-30 mm DBSS, that is, 5.138 L/m²·day and 71.59%. The maximum improvement in water productivity of the 10-10 mm DBSS was 37.5%, and the minimum of the 30-30 mm DBSS was 19%, compared to single-basin solar still SBSS at 10 mm water depth. The improvement in the daily thermal efficiency of the 10-10 mm and 30-30 mm DBSS was 24% and 12%, respectively, compared with the SBSS at 10 mm water depth. The maximum moisture content for the lower basin of the 10-10 mm DBSS was 700 g/kg dry air at 12 hr, while it was 520 g/kg dry air for the upper basin. The maximum temperature was recorded on the lower basin glass cover of the 10-10 mm DBSS, reaching about 90 °C.
Keywords
References
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Details
Primary Language
English
Subjects
Energy Systems Engineering (Other)
Journal Section
Research Article
Publication Date
September 1, 2026
Submission Date
May 26, 2026
Acceptance Date
August 5, 2026
Published in Issue
Year 2026 Volume: 29 Number: 3
APA
Ali, İ., Hamad, A. J., & Khalifa, A. H. (2026). Effect Of Water Basin Depth on The Thermal Performance of The Double-Basin Solar Still Under Iraqi Climatic Conditions. International Journal of Thermodynamics, 29(3), 271-280. https://doi.org/10.5541/ijot.1959300
AMA
1.Ali İ, Hamad AJ, Khalifa AH. Effect Of Water Basin Depth on The Thermal Performance of The Double-Basin Solar Still Under Iraqi Climatic Conditions. International Journal of Thermodynamics. 2026;29(3):271-280. doi:10.5541/ijot.1959300
Chicago
Ali, İbrahem, A. J. Hamad, and Abdul Hadi Khalifa. 2026. “Effect Of Water Basin Depth on The Thermal Performance of The Double-Basin Solar Still Under Iraqi Climatic Conditions”. International Journal of Thermodynamics 29 (3): 271-80. https://doi.org/10.5541/ijot.1959300.
EndNote
Ali İ, Hamad AJ, Khalifa AH (September 1, 2026) Effect Of Water Basin Depth on The Thermal Performance of The Double-Basin Solar Still Under Iraqi Climatic Conditions. International Journal of Thermodynamics 29 3 271–280.
IEEE
[1]İ. Ali, A. J. Hamad, and A. H. Khalifa, “Effect Of Water Basin Depth on The Thermal Performance of The Double-Basin Solar Still Under Iraqi Climatic Conditions”, International Journal of Thermodynamics, vol. 29, no. 3, pp. 271–280, Sept. 2026, doi: 10.5541/ijot.1959300.
ISNAD
Ali, İbrahem - Hamad, A. J. - Khalifa, Abdul Hadi. “Effect Of Water Basin Depth on The Thermal Performance of The Double-Basin Solar Still Under Iraqi Climatic Conditions”. International Journal of Thermodynamics 29/3 (September 1, 2026): 271-280. https://doi.org/10.5541/ijot.1959300.
JAMA
1.Ali İ, Hamad AJ, Khalifa AH. Effect Of Water Basin Depth on The Thermal Performance of The Double-Basin Solar Still Under Iraqi Climatic Conditions. International Journal of Thermodynamics. 2026;29:271–280.
MLA
Ali, İbrahem, et al. “Effect Of Water Basin Depth on The Thermal Performance of The Double-Basin Solar Still Under Iraqi Climatic Conditions”. International Journal of Thermodynamics, vol. 29, no. 3, Sept. 2026, pp. 271-80, doi:10.5541/ijot.1959300.
Vancouver
1.İbrahem Ali, A. J. Hamad, Abdul Hadi Khalifa. Effect Of Water Basin Depth on The Thermal Performance of The Double-Basin Solar Still Under Iraqi Climatic Conditions. International Journal of Thermodynamics. 2026 Sep. 1;29(3):271-80. doi:10.5541/ijot.1959300