...
首页> 外文期刊>Energies >Closed Solar House with Radiation Filtering Roof for Transplant Production in Arid Regions: Energy Consumption
【24h】

Closed Solar House with Radiation Filtering Roof for Transplant Production in Arid Regions: Energy Consumption

机译:带有辐射过滤屋顶的封闭式太阳能房,用于干旱地区的移植生产:能耗

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Under harsh weather conditions, closed transplant production systems (CTPS) are currently used to produce high quality transplants under artificial lighting. More than 70% of the electric energy consumed in the CTPS is for lighting. This article presents a simulation study to examine the possibility of using an alternative closed solar house, with radiation filtering roof, for transplant production in hot sunny regions to replace the artificial lighting in the CTPS with sunlight. The sidewalls of the house were insulated as in the CTPS and the roof was transparent, and made from polycarbonate hollow-channeled structure. There was a liquid radiation filter (LRF) (1.5% CuSO 4 –water solution) flowing in a closed loop through the roof channels to absorb the solar heat load ( i.e. , the near infra-red radiation, NIR: 700–2500 nm) and transmit the photosynthetically active radiation (PAR: 400–700 nm) for plant growth. The LRF inlet temperature was assumed to be 25 °C to prevent vapor condensation on the inner surface of the cover. The evapo-transpired water vapor was removed immediately to maintain the relative humidity inside the house at 70%. The results proved that this technique can offer an appropriate air temperature inside the house less than outside air temperature by around 8–10 °C in hot summer days, and the integrated electric energy consumption during the production period was estimated to be around 43% of the CTPS consumption.
机译:在恶劣的天气条件下,封闭式移植物生产系统(CTPS)当前用于在人工照明下生产高质量的移植物。 CTPS消耗的电能中有70%以上用于照明。本文提供了一项模拟研究,以研究使用替代的带辐射过滤屋顶的封闭式太阳房在炎热的晴天地区进行移植生产以替代日光照射下的CTPS人工照明的可能性。房屋的侧壁与CTPS一样绝缘,屋顶是透明的,由聚碳酸酯空心通道结构制成。有一个液体辐射过滤器(LRF)(1.5%CuSO 4-水溶液)在一个封闭的环路中流过屋顶通道,以吸收太阳热负荷(即,近红外辐射,NIR:700-2500 nm)并传播光合有效辐射(PAR:400–700 nm)以促进植物生长。 LRF入口温度假定为25°C,以防止蒸汽在盖的内表面凝结。立即除去蒸发掉的水蒸气,以保持房屋内的相对湿度为70%。结果证明,该技术可以在炎热的夏季提供适当的室内空气温度,比室外空气温度低8–10°C,并且在生产期间的综合电能消耗估计约为室内空气温度的43%。 CTPS消耗。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号