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光伏发电技术
★ 4.0
中试规模太阳能空气加热式加湿-除湿海水淡化系统的理论与实验研究
Theoretical and experimental investigation of a pilot-scale solar air-heated humidification dehumidification desalination system
| 作者 | Javed Sikandar Shaikh · Saleel Ismail · Uday Aswalekar · Kishor Vishwanath Manec · Ganesh Wahile |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 285 卷 |
| 技术分类 | 光伏发电技术 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | An FPSAC-powered [HDD](https://www.sciencedirect.com/topics/earth-and-planetary-sciences/dehumidification "Learn more about HDD from ScienceDirect's AI-generated Topic Pages") system was modelled and experimentally investigated. |
语言:
中文摘要
摘要 在各种加湿-除湿海水淡化(HDD)系统构型中,空气加热循环在小型实验室规模的研究中已展现出良好的应用前景,但目前尚缺乏中试规模的相关研究。本研究对一套由平板式太阳能空气集热器驱动的中试规模HDD装置进行了理论与实验性能分析。建立了太阳能空气集热器的光热模型以及基于传热传质原理的除湿器传输模型,并利用实验数据对模型进行了验证。在太阳能集热器的吸热板上设计并制造了三角形扰流元件,其相对粗糙节距分别为2.3、4.61和6.92,并针对最大淡水产率进行了优化。同时评估了开孔率分别为5.5%、12.25%和21.8%的穿孔扰流元件性能。为降低HDD系统的淡水生产成本,在加湿器中测试了天然可得的木苹果壳(带钻孔结构)。外场试验结果表明,在平均太阳辐射强度为712 W/m²的条件下,该系统实现了每日17.34 kg的最大淡水产量和0.65的增益输出比。与商用拉西环和级联微型环填料相比,木苹果壳填料在淡水产量、增益输出比以及加湿器性能潜力因子方面均表现出更优的性能。此外,带有实心扰流元件的太阳能空气集热器在相对粗糙节距为4.61时达到最佳性能,这是由于其提供了足够的纵向空间,有效防止了流动分离及自由剪切层的再附着。具有12.25%开孔率的扰流元件表现出最高的努塞尔数和较低的摩擦系数。
English Abstract
Abstract Among the various humidification dehumidification desalination (HDD) system configurations, the air-heated cycle has demonstrated promising results in small lab-scale setup investigations, whereas pilot-scale studies are lacking. This study theoretically and experimentally investigates the performance of a pilot-scale flat-plate solar air collector-powered HDD unit. An optical-thermal model for a solar air collector and a transport model based on heat and mass transfer for the dehumidifier have been developed and validated using experimental data. The triangular-shaped turbulators on the absorber plate of a solar collector with relative roughness pitches of 2.3, 4.61, and 6.92 are built and optimized for maximum distillate yield. Perforated turbulators with open area ratios of 5.5 %, 12.25 %, and 21.8 % are evaluated. To reduce distillate production costs in the HDD system, naturally available wood apple shell with drilled holes is tested in the humidifier. Outdoor test results revealed that at an average solar intensity of 712 W/m 2 , the proposed system achieved a maximum distillate yield and gain output ratio of 17.34 kg/day and 0.65, respectively. Wood apple shell packing demonstrated better distillate yield, gain output ratio, and humidifier performance potential factor compared to the commercially available raschig ring and cascade mini-ring packings. Moreover, the optimal performance of the solar air collector with solid turbulators was obtained at a relative roughness pitch of 4.61 due to sufficient longitudinal space to effectively prevent flow separation and reattachment of the free shear layer. Turbulators with a 12.25 % open area ratio exhibited the highest Nusselt number and low friction factor.
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SunView 深度解读
该太阳能空气加热海水淡化系统研究对阳光电源光热-光伏耦合应用具有启发意义。其平板集热器优化设计(扰流器布局、传热增强)可借鉴于SG系列逆变器散热系统改进,提升功率器件热管理效率。系统17.34kg/日产水量及0.65增益比展示了可再生能源在水资源领域的应用潜力,可与iSolarCloud平台结合开发光伏驱动淡化监控方案。木苹果壳填料的低成本创新思路,对阳光电源储能系统PowerTitan的相变材料选型及成本优化具有参考价值,推动综合能源解决方案在海岛、干旱地区的多场景应用拓展。