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储能系统技术
★ 5.0
显热与潜热储能耦合对混合模式太阳能隧道干燥器中黄瓜干燥动力学及产品品质的影响
Effect on drying kinetics and product quality of cucumber in a mixed mode solar tunnel dryer upon integration of sensible and latent heat thermal energy storage
| 作者 | C.N.Deepa · A.K.Behur |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 285 卷 |
| 技术分类 | 储能系统技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 70.5% reduction in drying time by the integration of latent heat and sensible [heat energy](https://www.sciencedirect.com/topics/engineering/thermal-energy "Learn more about heat energy from ScienceDirect's AI-generated Topic Pages") storage. |
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中文摘要
本研究探讨了在集成显热和潜热储能的混合模式太阳能干燥器中,黄瓜干燥动力学、经济特性及营养品质的变化。干燥室底部设置厚层黑色卵石以实现显热储能,同时将填充月桂酸相变材料(PCM)的定制腔室与太阳能集热器串联连接,以实现潜热储能。实验分别在无储能(试验1)、仅显热储能(试验2)以及同时具备显热与潜热储能(试验3)三种工况下运行干燥器。与露天日晒干燥相比,试验1、试验2和试验3的干燥时间分别缩短了29.4%、47%和70.5%。试验1、试验2和试验3记录的平均干燥器温度分别为42.3 °C、45.9 °C和50.9 °C。通过集成显热与潜热储能材料,干燥速率显著提高至每小时0.76 kg水分,并实现了最高达14.2%的干燥效率。试验3的回收期最短,仅为0.7年,相较于试验1和试验2具有显著的经济效益。产品品质分析表明,三种试验条件下所得干制品的维生素C含量均高于露天日晒干燥样品,其中试验3的产品维生素C保留率最高。
English Abstract
Abstract The effect on drying kinetics, economic characteristics and nutritional quality of dried cucumbers in a mixed mode solar dryer with both sensible and latent heat energy storage is investigated in this study. A thick bed of black pebbles at the base of drying chamber facilitated sensible heat energy storage and Lauric acid PCM filled in custom made chamber which was connected in series to the solar collector allowed latent heat energy storage. The dryer was operated without energy storage (Test 1), with sensible heat energy storage alone (Test 2) and with both sensible and latent heat energy storage (Test 3), in this study. Compared to open sun drying test 1, 2 and 3 reduced the drying time by 29.4 %, 47 % and 70.5 %, respectively. An average dryer temperature of 42.3 °C, 45.9 °C and 50.9 °C were recorded in test 1, test 2 and test 3, respectively. Rate of drying was significantly enhanced up to.76 kg of moisture per hour by integrating latent heat and sensible heat energy storage materials and also exhibited the highest drying efficiency of 14.2 %. Test 3 had the lowest payback period of 0.7 years with remarkable economic benefits compared to test 1 and test 2 configurations. The quality analysis of the products revealed higher vitamin C content in dried products from all three tests when compared to dried products under open sun, with highest retention of vitamin C reported in products from test 3.
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SunView 深度解读
该混合储能干燥系统验证了显热-潜热协同储能的技术优势,对阳光电源ST系列储能变流器与PowerTitan系统的多场景应用具有启发意义。研究显示复合储能可提升70.5%效率并缩短投资回收期至0.7年,印证了阳光电源推广的工商业储能经济性模型。其温度分级利用策略可借鉴至液冷储能系统热管理优化,结合iSolarCloud平台实现农业光伏储能一体化解决方案,拓展分布式能源在农产品加工等新兴场景的应用边界。