便携式双斜面储能太阳能蒸馏器的热管理策略:提高性能的实验研究

Amir Kouravand , Sara Tamjid Shabestari , Nastaran Zirak , Ghasem Kasaeian , Leila Fereidooni , Alibakhsh Kasaeian
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摘要

在这项研究中,研究了旨在提高便携式双坡太阳能蒸馏器淡水产量的热管理策略,该蒸馏器专为缺水地区设计,优先考虑轻量级和便携式配置。研究结果表明,聚甲基丙烯酸甲酯(PMMA)是最佳的坡面覆盖材料,在40°倾斜角度下,高峰时段的淡水产量为70 mL。此外,这种配置显示了最高的每日淡水产量,盆地中每升盐水的淡水产量为275 mL。本研究通过实施绝缘、金属吸收板和相变材料(PCM)增强,显著提高了系统效率。最终在各种情况下都有了实质性的改进:40.5%(绝缘),36.6%(铝),36.1% (PCM),以及惊人的45.2%的绝缘/铝/PCM配置。该组合设计展示了出色的每日淡水产量385 mL,强调了这些先进热管理策略的卓越能力。这些结果强调了先进热管理战略的变革潜力,为缺水地区提供了可持续的解决方案。此外,该研究还解决了蒸馏水中总溶解固体(TDS)的问题,实现了95.8%的显著降低。盐水中的总溶解固体含量从最初的4970 ppm降至200 ppm以下,完全符合世界卫生组织(世卫组织)的标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal management strategies for a portable double slope solar still with energy storage: An experimental study for enhancing the performance
In this study, thermal management strategies aimed at enhancing freshwater production in portable double-slope solar stills, designed specifically for water-scarce regions, prioritizing lightweight and portable configurations, are investigated. The findings reveal poly methyl methacrylate (PMMA) as the optimal slope cover material, achieving a freshwater output of 70 mL during peak hours under a 40° tilt angle. Additionally, this configuration demonstrates the highest daily freshwater production, an impressive 275 mL per liter of brine water in the basin. This study significantly enhances system efficiency by implementing insulation, a metal absorber plate, and phase change materials (PCM) enhancements. This culminates in substantial improvements across various scenarios: 40.5% (insulation), 36.6% (aluminum), 36.1% (PCM), and a remarkable 45.2% for the insulation/aluminum/PCM configuration. The combination design demonstrates an outstanding daily freshwater production of 385 mL, emphasizing the remarkable capabilities of these advanced thermal management strategies. These results underscore the transformative potential of advanced thermal management strategies, providing sustainable solutions for water-scarce regions. Moreover, the study addresses total dissolved solids (TDS) in distilled water, achieving an outstanding 95.8% reduction. Total dissolved solids levels drop from an initial 4970 ppm in saline water to below 200 ppm, aligning impeccably with World Health Organization (WHO) standards.
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