Performance improvement of solar distiller using hang wick, reflectors and phase change materials enriched with nano-additives
Author:
Publisher
Elsevier BV
Subject
Fluid Flow and Transfer Processes,Engineering (miscellaneous)
Reference88 articles.
1. Reverse osmosis desalination systems powered by solar energy: preheating techniques and brine disposal challenges – a detailed review;Shalaby;Energy Convers. Manag.,2022
2. Feasibility analysis and optimization of an energy-water-heat nexus supplied by an autonomous hybrid renewable power generation system: an empirical study on airport facilities;Elkadeem;Desalination,2021
3. The measurement of water scarcity: defining a meaningful indicator;Damkjaer;Ambio,2017
4. Performance assessment of solar PV-driven hybrid HDH-RO desalination system integrated with energy recovery units and solar collectors: theoretical approach;Abdelgaied;Energy Convers. Manag.,2021
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1. Assessment of thermoeconomic and thermoenvironmental impacts of a novel solar desalination system using a heat pump, evacuated tubes, cover cooling, and ultrasonic mist;Applied Thermal Engineering;2024-10
2. Improving solar still performance via the integration of nanoparticle-enhanced phase change materials: A novel pyramid-shaped design with a numerical simulation approach;Journal of Energy Storage;2024-09
3. Productivity prediction of a spherical distiller using a machine learning model and triangulation topology aggregation optimizer;Desalination;2024-09
4. 3E analysis of enhancing solar distillation performance through innovative wick convex stepped absorber, PCM, and evacuated tube solar water collector: Experimental investigation;Journal of Energy Storage;2024-08
5. Thermo-physical characteristics and storage material compatibility in nano-enhanced phase change materials for solar distillation applications: A critical assessment;Solar Energy Materials and Solar Cells;2024-07
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