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储能系统技术 储能系统 ★ 5.0

可再生能源驱动的混合制冷系统用于提升食品保鲜:技术经济优化与商业模式构建

Renewable-driven hybrid refrigeration system for enhancing food preservation: Techno-economic optimization and business modelling

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中文摘要

摘要 本研究开发并优化了一种由可再生能源驱动的混合制冷系统,旨在提升无电网覆盖的农村地区的食品保鲜能力。该系统集成了太阳能光伏、太阳能集热器、风能以及电池储能,提供一种可持续且具有成本效益的制冷解决方案。以埃塞俄比亚为案例地,开展了全面的技术经济分析,评估系统的性能、成本效益及市场可行性。优化后的系统可满足22.42 kW的热能需求和2.82 kW的电力需求,使每日运行成本从100美元降低至86.2美元。通过将光伏板数量增加至15块、电池储能单元从11个减少至7个、太阳能集热器面积优化为322 m²,系统效率得到提升。地下蓄热管道长度减少至1366米,进一步增强了热效率。该系统实现了近乎离网运行,电网依赖度从9.3 W降至3.2 W,辅助加热器的使用低于总需求的1%。所提出的商业模式结合了订阅制和租购融资方式,支持小农户和农业合作社采用该系统,并实现五年回本周期。调查结果显示,90%的农民缺乏制冷设施,而48%的合作社倾向于政府激励政策。该系统的环境效益包括现场(运行阶段)零CO₂排放以及使用环保型制冷剂。本研究证明了混合可再生能源集成于可持续冷链存储的可行性,有助于减少收获后损失,并增强无电网社区的食品供应链韧性。针对年际资源波动性和±20%资本成本离散性的敏感性分析,验证了优化配置方案的鲁棒性。

English Abstract

Abstract This study develops and optimises a renewable-driven hybrid refrigeration system to enhance food preservation in off-grid rural areas. The system integrates solar photovoltaic, solar thermal collectors, wind energy, and battery storage to provide a sustainable, cost-effective cooling solution. A comprehensive techno-economic analysis was conducted using Ethiopia as a case study to evaluate system performance, cost-effectiveness, and market feasibility. The optimised system meets 22.42 kW of thermal power demand and 2.82 kW of electrical power demand, reducing daily operational costs from $100 to $86.2. Optimisation improved system efficiency by increasing photovoltaic panels to 15, reducing battery storage from 11 to 7 units, and optimising solar collector area to 322 m 2 . The length of underground thermal storage piping was reduced to 1366 m, enhancing thermal efficiency. The system achieved near off-grid operation, with grid dependency reduced from 9.3 W to 3.2 W and auxiliary heater reliance below 1 % of total demand. A business model incorporating subscription-based and lease-to-buy financing supports adoption by smallholder farmers and cooperatives, with a five-year payback period. Survey results indicate that 90 % of farmers lack cooling facilities, while 48 % of cooperatives favour government incentives. The system’s environmental benefits include zero on-site (operational) CO 2 emissions and eco-friendly refrigerants. This research demonstrates the feasibility of hybrid renewable energy integration in sustainable cold storage, reducing post-harvest losses and enhancing food supply chains in off-grid communities. Sensitivity analysis against inter-annual resource variability and ± 20 % capital-cost dispersion confirms the robustness of the optimised configuration.
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SunView 深度解读

该混合制冷系统对阳光电源储能及光伏产品具有重要应用价值。系统集成光伏、风电与电池储能的架构,可直接应用ST系列PCS与PowerTitan储能方案,通过优化电池配置(从11组降至7组)提升经济性。SG系列光伏逆变器配合MPPT技术可实现15块光伏板的高效能量转换,将电网依赖从9.3W降至3.2W,接近离网运行。该案例验证了阳光电源储能系统在农村冷链场景的技术可行性,iSolarCloud平台可提供预测性运维支持,助力新兴市场拓展订阅制商业模式,五年回本周期具备推广价值。