Enhancing the performance of tubular solar stills for water purification: A comprehensive review and comparative analysis of methodologies and materials
This research paper presents a comprehensive review and comparative analysis aimed at enhancing the performance of tubular solar stills for water purification. As the global demand for clean and potable water rises, harnessing solar energy for water desalination has gained considerable attention. Tu...
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Published in | Results in engineering Vol. 21; p. 101722 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Elsevier B.V
01.03.2024
Elsevier |
Subjects | |
Online Access | Get full text |
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Abstract | This research paper presents a comprehensive review and comparative analysis aimed at enhancing the performance of tubular solar stills for water purification. As the global demand for clean and potable water rises, harnessing solar energy for water desalination has gained considerable attention. Tubular solar stills offer a promising solution, utilizing solar radiation to drive the purification process to produce a moderate productivity of 6–10 L/m2.day. This paper systematically reviews existing methodologies and materials employed in the design and construction of tubular solar stills, evaluating their impact on overall performance. The review encompasses various aspects, including the geometry of tubular solar stills, heat-absorbing materials, condensation surfaces, and innovative enhancements applied to improve efficiency. Comparative analyses are conducted to assess the strengths and limitations of different approaches, providing insights into the factors influencing distillation rates, energy efficiency, and cost-effectiveness such as using nanofluids, phase change materials and thermal storing materials, glass cooling, water preheating, rotating cylinders, various absorber shapes … etc. Furthermore, the paper discusses recent advancements in nanotechnology and novel materials that hold promise for optimizing tubular solar still performance to have such productivity of 11 L/m2.day and efficiency of 80 %. The findings of this research aim to guide researchers, engineers, and policymakers in selecting optimal design parameters and materials for tubular solar stills, ultimately contributing to the development of more efficient and sustainable water purification systems. The holistic approach presented in this paper seeks to address the existing challenges and promote the widespread adoption of tubular solar stills as a viable solution for decentralized water purification in regions facing water scarcity.
•A comprehensive review on tubular solar still is conducted.•A comparative analysis of methodologies and materials of tubular distiller is discussed.•The parameters that affect the tubular solar still performance was reviewed in details.•Suggestions for further research on tubular solar still are introduced. |
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AbstractList | This research paper presents a comprehensive review and comparative analysis aimed at enhancing the performance of tubular solar stills for water purification. As the global demand for clean and potable water rises, harnessing solar energy for water desalination has gained considerable attention. Tubular solar stills offer a promising solution, utilizing solar radiation to drive the purification process to produce a moderate productivity of 6–10 L/m2.day. This paper systematically reviews existing methodologies and materials employed in the design and construction of tubular solar stills, evaluating their impact on overall performance. The review encompasses various aspects, including the geometry of tubular solar stills, heat-absorbing materials, condensation surfaces, and innovative enhancements applied to improve efficiency. Comparative analyses are conducted to assess the strengths and limitations of different approaches, providing insights into the factors influencing distillation rates, energy efficiency, and cost-effectiveness such as using nanofluids, phase change materials and thermal storing materials, glass cooling, water preheating, rotating cylinders, various absorber shapes … etc. Furthermore, the paper discusses recent advancements in nanotechnology and novel materials that hold promise for optimizing tubular solar still performance to have such productivity of 11 L/m2.day and efficiency of 80 %. The findings of this research aim to guide researchers, engineers, and policymakers in selecting optimal design parameters and materials for tubular solar stills, ultimately contributing to the development of more efficient and sustainable water purification systems. The holistic approach presented in this paper seeks to address the existing challenges and promote the widespread adoption of tubular solar stills as a viable solution for decentralized water purification in regions facing water scarcity.
•A comprehensive review on tubular solar still is conducted.•A comparative analysis of methodologies and materials of tubular distiller is discussed.•The parameters that affect the tubular solar still performance was reviewed in details.•Suggestions for further research on tubular solar still are introduced. This research paper presents a comprehensive review and comparative analysis aimed at enhancing the performance of tubular solar stills for water purification. As the global demand for clean and potable water rises, harnessing solar energy for water desalination has gained considerable attention. Tubular solar stills offer a promising solution, utilizing solar radiation to drive the purification process to produce a moderate productivity of 6–10 L/m2.day. This paper systematically reviews existing methodologies and materials employed in the design and construction of tubular solar stills, evaluating their impact on overall performance. The review encompasses various aspects, including the geometry of tubular solar stills, heat-absorbing materials, condensation surfaces, and innovative enhancements applied to improve efficiency. Comparative analyses are conducted to assess the strengths and limitations of different approaches, providing insights into the factors influencing distillation rates, energy efficiency, and cost-effectiveness such as using nanofluids, phase change materials and thermal storing materials, glass cooling, water preheating, rotating cylinders, various absorber shapes … etc. Furthermore, the paper discusses recent advancements in nanotechnology and novel materials that hold promise for optimizing tubular solar still performance to have such productivity of 11 L/m2.day and efficiency of 80 %. The findings of this research aim to guide researchers, engineers, and policymakers in selecting optimal design parameters and materials for tubular solar stills, ultimately contributing to the development of more efficient and sustainable water purification systems. The holistic approach presented in this paper seeks to address the existing challenges and promote the widespread adoption of tubular solar stills as a viable solution for decentralized water purification in regions facing water scarcity. |
ArticleNumber | 101722 |
Author | Alawee, Wissam H. Essa, Fadl A. Panchal, Hitesh Abdullah, A.S. Elsheikh, Ammar H. |
Author_xml | – sequence: 1 givenname: A.S. surname: Abdullah fullname: Abdullah, A.S. email: asbekhatro@yahoo.com organization: Department of Mechanical Engineering, College of Engineering in Al-Kharj, Prince Sattam bin Abdulaziz University, Al-Kharj, 11942, Kingdom of Saudi Arabia – sequence: 2 givenname: Fadl A. surname: Essa fullname: Essa, Fadl A. email: fadlessa@eng.kfs.edu.eg organization: Mechanical Engineering Department, Faculty of Engineering, Kafrelsheikh University, Kafrelsheikh, 33516, Egypt – sequence: 3 givenname: Hitesh surname: Panchal fullname: Panchal, Hitesh organization: Mechanical engineering department, Government Engineering College Patan, Gujarat, India – sequence: 4 givenname: Wissam H. surname: Alawee fullname: Alawee, Wissam H. organization: Control and Systems Engineering Department, University of Technology, Baghdad, Iraq – sequence: 5 givenname: Ammar H. surname: Elsheikh fullname: Elsheikh, Ammar H. organization: Tokyo Institute of Technology, Tokyo, 152-8550, Japan |
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Keywords | Productivity Solar still Tubular solar still Desalination Solar energy |
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Title | Enhancing the performance of tubular solar stills for water purification: A comprehensive review and comparative analysis of methodologies and materials |
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