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内置金属隔板的太阳能烟囱:结构设计与热液性能分析
Built-in metallic partitions in solar chimney: Structural design and thermo-hydraulic performance analysis
| 作者 | Jing Nie · Jinchen Xu · Tongzheng Guo · Jiawei Wang · Jing Jia · Hong Gao |
| 期刊 | Energy Conversion and Management |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 332 卷 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | Metallic partitions enhance fluid-solid heat transfer eliminate ground modifications and retain structural simplicity. |
语言:
中文摘要
摘要 本研究提出一种在太阳能烟囱中引入内置金属隔板的设计,以增强流体与固体之间的对流换热性能。基于曼萨纳雷斯(Manzanares)原型,通过数值模拟分析了太阳辐射强度、涡轮压降以及环境温度对流动场和热液性能的影响。采用响应面法建立输出功率预测模型。结果表明,在特定运行条件下,与原型相比,金属隔板显著提高了热效率,输出功率相对提升了9.28%,集热效率提升了21.61%,并在特定工况(SR = 1000 W/m²,ΔP = 140 Pa,环境温度 = 308 K)下实现了最大输出功率89.607 kW。该系统在低辐射和高ΔP条件下表现出良好的运行稳定性。为降低材料成本同时保持高效传热性能,提出了诸如铝-钢复合结构、蜂窝状穿孔设计结合模块化制造等经济有效的策略。该方法无需大规模地面改造,保持了结构的简洁性,为大规模太阳能烟囱发电厂的高效、低成本部署提供了新颖解决方案。
English Abstract
Abstract This study introduces a solar chimney design incorporating built-in metallic partitions to enhance convective heat transfer between fluids and solids. Based on the Manzanares prototype, numerical simulations were conducted to analyze the effects of solar radiation intensity, turbine pressure drop, and ambient temperature on flow fields and thermo-hydraulic performance. A response surface methodology was employed to develop an output power prediction model. Results indicate that metallic partitions significantly improve thermal efficiency, with relative increase rates of 9.28 % in power output and 21.61 % in collector efficiency compared to the prototype at specific operating conditions, and achieving a maximum output power of 89.607 kW under specific conditions (SR = 1000 W/m 2 , ΔP = 140 Pa, ambient temperature = 308 K). The system demonstrates robust operation under low radiation and high ΔP conditions. Cost-effective strategies, such as aluminum-steel composite structures and honeycomb perforated designs integrated with modular manufacturing, are proposed to reduce material costs while maintaining high heat transfer efficiency. This approach eliminates the need for large-scale ground modifications, preserves structural simplicity, and offers a novel solution for efficient, low-cost deployment in large-scale solar chimney power plants.
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SunView 深度解读
该太阳能烟囱金属隔板强化传热技术对阳光电源光热-光伏混合系统具有启发价值。其响应面优化方法可应用于ST系列储能系统的热管理设计,通过金属隔板结构提升PCS功率模块散热效率。研究中的铝钢复合结构与蜂窝穿孔设计理念,可借鉴至PowerTitan集装箱式储能系统的被动散热优化,降低主动冷却能耗。建议结合iSolarCloud平台的环境数据,开发光热辅助预热算法,提升低温环境下储能系统效率,并探索SiC器件散热的模块化解决方案。