室内多气候带太阳能烟囱热特性的数值研究

Hongtao Xu, F. Talkhoncheh, Kunpeng Liu, Mo Yang
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引用次数: 0

摘要

为了在中国2016年世界园艺博览会太阳能烟囱中创建适合植物种植的多气候带,对半径为2km,高度为1km的太阳能烟囱进行了室内热特性数值研究。实验数据验证了仿真方法的有效性。利用辐射热、钢铁厂热和地下水热作为多气候带发电的热源。预测了夏季和冬季的室内热特性,评价了入口高度和入口半径对室内热特性的影响。在进口高度为3.8m时,SS和WS的温升分别在6t和17t左右。SS中的空气速度比WS大得多。进口高度从3.8m降低到0.5m对内部热场影响最小。但进一步减小到0.2m,则空气流量更小,温度更高。当太阳烟囱半径从2.0km减小到1.725km时,温度场基本保持不变。进一步减少到1.13公里,温度会低得多。目前的数值分析可以为太阳能烟囱内植物的栽培提供初步的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical study of the thermal characteristics of a solar chimney for creating interior multi-climate zones
In order to create the interior multi-climate zones suitable for plant cultivation in a solar chimney proposed for the World Horticultural Exposition 2016 in China, the numerical study is performed to investigate the interior thermal characteristics of a solar chimney with 2km radius and 1km height. The simulation methodology is validated by experimental data. Available heat from radiation, steel plant and underground water are taken as the sources for multi-climate zone generation. The interior thermal characteristics in summer season (SS) and winter season (WS) scenarios are predicted to evaluate the impacts of inlet height and radius. It is found the temperature increment is around 6t and 17t for SS and WS with 3.8m inlet height. The air velocity in SS is much larger than WS. The decrease of the inlet height from 3.8m to 0.5m has minimal impact for interior thermal field. However, further decrease to 0.2m brings less air flow rate and higher temperature. The temperature field remains almost the same when the radius of solar chimney decreases from 2.0km to 1.725km. Further decrease to 1.13km results in much lower temperature. The current numerical analysis can provide preliminary suggestions for the plant cultivation in the solar chimney.
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