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首页> 外文期刊>Solar Energy >Numerical and experimental study of laboratory and full-scale prototypes of the novel solar multi-surface air collector with double-receiver tubes integrated into a greenhouse heating system
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Numerical and experimental study of laboratory and full-scale prototypes of the novel solar multi-surface air collector with double-receiver tubes integrated into a greenhouse heating system

机译:具有集成在温室加热系统中的双接收管的新型太阳能多表面空气收集器实验室和全规模原型的数值和实验研究

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摘要

The application of greenhouse technologies is rapidly expanding in China and other regions of the world with the continental climate. Such technologies are characterized by a considerable consumption of fossil fuels, especially in winter periods. Various renewable energy technologies are used to reduce the energy demand in greenhouses, including solar heating. Simpler designs of water or air solar collectors are preferred without sun-tracking devices and reduced dimensions and weight. In this work, a novel solar multi-surface air collector with double-receiver tubes, which does not require a sun-tracking device is proposed and has increased concentration ratio and sun rays convergence and reduced thermal losses. The laboratory and full-scale prototypes of the proposed novel collector were manufactured and tested in laboratory conditions during the December-January period as a part of the greenhouse with the active-passive ventilation wall and latent thermal storage, located in the Beijing Region. Results of experiments demonstrate that the solar collector increases the average temperatures of the greenhouse north wall inner surface by 7.5 degrees C, indoor air during the night-time by 1.8 degrees C and indoor soil by 1.5 degrees C. The novel collector provided active heat gains of 11.831 GJ during the December-January period and satisfied from 11% to 81% of the heat load. A lumped parameter mathematical model of the proposed collector was developed, and the comparison of simulation results and experimental data demonstrate its high accuracy in prediction of the collector performance. The model was used to study the influences of outdoor meteorological parameters, air velocity in the receiver tubes and their length on the performance of the collector. This data was used to determine the rational design parameters and air velocity of the full-scale collector. The model was also used to rationalize the variation of air velocity in the receiver tube during the day.
机译:温室技术的应用在中国和世界其他地区随着大陆气候迅速扩展。这些技术的特点是化石燃料的相当大量消耗,特别是在冬季。各种可再生能源技术用于降低温室中的能源需求,包括太阳能加热。更简单的水或空气太阳能集热器的设计是优选的,而无需防晒装置和减少尺寸和重量。在这项工作中,提出了一种具有双接收管的新型太阳能多表面空气收集器,其不需要太阳跟踪装置,并且具有增加的浓度比和太阳射线收敛和减少的热损失。在12月至1月期间的实验室条件下,拟议的新型收藏家的实验室和全规模原型是在北京地区的主动通风墙和潜热存储的温室的一部分。实验结果表明,太阳能收集器将温室北壁内表面的平均温度提高了7.5摄氏度,在夜间中的室内空气中达到1.8摄氏度,室内土室内的1.5℃。新颖的收集器提供了活跃的热量11.831 GJ在12月至1月期间,满足了11%至81%的热负荷。开发了拟议收集器的集总参数数学模型,仿真结果和实验数据的比较展示了预测收集器性能的高精度。该模型用于研究室外气象参数,接收管中的空气速度及其长度对收集器性能的影响。该数据用于确定满量程收集器的合理设计参数和空气速度。该模型还用于在白天在接收管中的空气速度变化来合理化。

著录项

  • 来源
    《Solar Energy》 |2020年第5期|86-103|共18页
  • 作者单位

    Beijing Univ Technol Coll Architecture & Civil Engn Beijing 100124 Peoples R China;

    Beijing Univ Technol Coll Architecture & Civil Engn Beijing 100124 Peoples R China;

    Northumbria Univ Fac Engn & Environm Newcastle Upon Tyne Tyne & Wear England;

    UCL Bartlett Sch Construct & Project Management 1-19 Torrington Pl London WC1E 7HB England;

    Beijing Inst Technol Sch Mech Engn Beijing 100081 Peoples R China;

    Chinese Acad Sci Inst Engn Thermophys Beijing 100190 Peoples R China;

    Beijing Univ Technol Coll Architecture & Civil Engn Beijing 100124 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solar air collector; Active-passive ventilation wall; Latent thermal storage; Mathematical model; Solar greenhouse;

    机译:太阳能集电器;主动透气墙;潜热存储;数学模型;太阳能温室;

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