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Añadir al carritoPaperback. Condición: new. Paperback. This study presents an advanced hybrid solar desalination system aimed at addressing the growing challenge of clean drinking water scarcity in energy-constrained and remote regions. A modified single-slope solar still integrated with nano-enhanced phase change materials and coupled with a flat-plate solar water heater is designed and experimentally investigated under real climatic conditions. The integration of phase change materials improves thermal storage and nocturnal productivity, while nanoparticle additives enhance heat transfer and evaporation rates. Energy and exergy analyses reveal a significant reduction in irreversibility losses and improved utilization of available solar energy. The proposed system demonstrates substantial gains in freshwater yield and thermal efficiency compared to conventional solar stills, offering a scalable, cost-effective, and environmentally sustainable desalination solution for rural, coastal, and off-grid applications. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
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Añadir al carritoPaperback. Condición: new. Paperback. This study presents an advanced hybrid solar desalination system aimed at addressing the growing challenge of clean drinking water scarcity in energy-constrained and remote regions. A modified single-slope solar still integrated with nano-enhanced phase change materials and coupled with a flat-plate solar water heater is designed and experimentally investigated under real climatic conditions. The integration of phase change materials improves thermal storage and nocturnal productivity, while nanoparticle additives enhance heat transfer and evaporation rates. Energy and exergy analyses reveal a significant reduction in irreversibility losses and improved utilization of available solar energy. The proposed system demonstrates substantial gains in freshwater yield and thermal efficiency compared to conventional solar stills, offering a scalable, cost-effective, and environmentally sustainable desalination solution for rural, coastal, and off-grid applications. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
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Añadir al carritoPaperback. Condición: new. Paperback. This study presents an advanced hybrid solar desalination system aimed at addressing the growing challenge of clean drinking water scarcity in energy-constrained and remote regions. A modified single-slope solar still integrated with nano-enhanced phase change materials and coupled with a flat-plate solar water heater is designed and experimentally investigated under real climatic conditions. The integration of phase change materials improves thermal storage and nocturnal productivity, while nanoparticle additives enhance heat transfer and evaporation rates. Energy and exergy analyses reveal a significant reduction in irreversibility losses and improved utilization of available solar energy. The proposed system demonstrates substantial gains in freshwater yield and thermal efficiency compared to conventional solar stills, offering a scalable, cost-effective, and environmentally sustainable desalination solution for rural, coastal, and off-grid applications. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
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Añadir al carritoTaschenbuch. Condición: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - This study presents an advanced hybrid solar desalination system aimed at addressing the growing challenge of clean drinking water scarcity in energy-constrained and remote regions. A modified single-slope solar still integrated with nano-enhanced phase change materials and coupled with a flat-plate solar water heater is designed and experimentally investigated under real climatic conditions. The integration of phase change materials improves thermal storage and nocturnal productivity, while nanoparticle additives enhance heat transfer and evaporation rates. Energy and exergy analyses reveal a significant reduction in irreversibility losses and improved utilization of available solar energy. The proposed system demonstrates substantial gains in freshwater yield and thermal efficiency compared to conventional solar stills, offering a scalable, cost-effective, and environmentally sustainable desalination solution for rural, coastal, and off-grid applications.
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Añadir al carritoTaschenbuch. Condición: Neu. Solar Desalination | Performance Enhancement using PCMs and Nanoparticles | Santosh Kumar Gupta | Taschenbuch | Englisch | 2026 | Eliva Press | EAN 9789999335096 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu Print on Demand.