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模块化太阳能干燥与填充床热能储存系统的参数分析
Parametric analysis of a modular solar drying and packed bed thermal energy storage system
| 作者 | Ian Wolde · Ignacio Calderón-Vásquez · Matias Molin · Nicolas Pailahueque · José M.Cardemilad |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 300 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 工商业光伏 可靠性分析 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Analysis through transient simulations of solar drying with copper slags packed bed storage. |
语言:
中文摘要
摘要 太阳能干燥是一种有效减少食品保鲜过程中化石燃料消耗的技术。然而,其可靠性受太阳辐射可用性的限制。集成热能储存(TES)可以通过延长系统在峰值日照时间之外的运行时间来提高系统效率。利用具有高热容的工业副产品(如冶金矿渣)作为TES材料,为热能储存提供了一种有前景的替代方案。然而,太阳能集热器与TES的集成仍面临挑战,因为系统性能依赖于系统配置和运行策略。本研究针对猕猴桃片的太阳能干燥系统,开展了一项结合太阳能空气集热器与填充床式TES装置的参数分析。基于经实验数据验证的数学模型,评估了三种不同的TES放热方案,考虑了气流切换策略、六种太阳能场配置以及辅助加热器在全年维持干燥可靠运行中的作用。研究结果表明,采用早期切换气流策略,结合较小的TES体积和单个太阳能集热器,相较于传统干燥配置可实现40.53%的成本降低。结果表明,合理匹配系统各组件能够显著提升太阳能干燥系统的性能。
English Abstract
Abstract Solar drying is an effective technology for reducing fossil fuel consumption in food preservation. However, its reliability is limited by the availability of solar radiation. Integrating thermal energy storage (TES) can enhance system efficiency by extending operation beyond peak sunlight hours. The use of industrial by-products with high thermal capacities, such as metallurgical slags, offers a promising alternative for TES. However, the integration of solar collectors and TES remains a challenge, as system performance depends on the configuration and operational strategy. This study presents a parametric analysis of a solar drying system for kiwifruit slices, incorporating solar air collectors and a packed-bed TES unit. A validated mathematical model, supported by experimental data, is used to assess three different schemes for discharging TES, considering flow-switching strategies, six solar field configurations, and the role of an auxiliary heater in maintaining drying reliability throughout the year. The findings indicate that early switching the airflow, combined with smaller TES volumes and one solar collector, achieves a 40.53% cost reduction compared to a conventional drying configuration. The results highlight that balancing the system’s components significantly enhances solar drying performance.
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SunView 深度解读
该太阳能干燥与储能系统研究对阳光电源ST系列储能变流器及工商业光伏解决方案具有重要参考价值。文中提出的热能储存与太阳能集热器集成优化策略,与我司PowerTitan储能系统的能量管理逻辑高度契合。通过流量切换策略实现40.53%成本降低的研究结论,可启发SG系列逆变器在农业光伏场景中的MPPT优化算法改进,特别是在间歇性负载下的能量调度策略。该应用场景可拓展至iSolarCloud平台的智慧农业模块,实现光伏发电-储能-热能利用的全链条监控与预测性维护,为工商业分布式光储系统开拓农产品加工等新兴市场提供技术支撑。