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串联式真空管太阳能空气集热器性能的实验研究,其中涉及纳米氧化铜/石蜡作为储能增强剂。

Experimental study of solar air heater performance with evacuated tubes connected in series and involving nano-copper oxide/paraffin wax as thermal storage enhancer.

机构信息

Mechanical Engineering Department, Faculty of Engineering, Kafrelsheikh University, Kafrelsheikh, 33516, Egypt.

出版信息

Environ Sci Pollut Res Int. 2023 Jan;30(2):4603-4616. doi: 10.1007/s11356-022-22462-6. Epub 2022 Aug 16.

Abstract

The investment of solar energy in life applications has become mandatory to maintain a clean environment and reduce the use of fossil fuels. This work aimed to improve the performance of solar air heater (SAH) by using evacuated tube solar collectors ETSC integrated with nano-enhancer phase change material (NE-PCM). To achieve this purpose, a system consisting of 5 linked collecting panels was designed, fabricated, and experimentally investigated. Each panel included a glass-evacuated tube with two concentric aluminum pipes installed inside. NE-PCM was placed between the inlet and outlet air paths inside the evacuated tube to enhance the heat transfer rate. The performance was investigated with and without NE-PCM at five mass flow rates (0.006, 0.008, 0.01, 0.03, and 0.05 kg/s). Experimental results revealed that the highest temperature was 116, 108, 102, 95, and 93 °C, respectively, for the above mass flow rates without adding NE-PCM. The outlet temperature was decreased by 6-15 °C when using NE-PCM. The SAH efficiency was increased by 29.62% compared to the system without NE-PCM at 0.05 kg/s. The maximum thermal efficiency for the system with NE-PCM was 62.66% at 0.05 kg/s, and the pressure drop was 6.79 kPa under the same conditions. As well known, the hot air is used for a variety of purposes including space heating, food processing, drying of fruit, vegetables, dairy, and solar cooking.

摘要

在生活中的应用中投资太阳能已经成为维护清洁环境和减少化石燃料使用的必要手段。这项工作旨在通过使用真空管太阳能集热器(ETS)与纳米增强相变材料(NE-PCM)集成来提高太阳能空气加热器(SAH)的性能。为了达到这个目的,设计、制造并实验研究了一个由 5 个连接的集热板组成的系统。每个集热板都包含一个带有两个同心铝管的玻璃真空管。NE-PCM 被放置在真空管内部的进风和出风通道之间,以提高传热速率。在五种质量流量(0.006、0.008、0.01、0.03 和 0.05kg/s)下,研究了有无 NE-PCM 的性能。实验结果表明,在没有添加 NE-PCM 的情况下,上述质量流量的最高温度分别为 116、108、102、95 和 93°C。使用 NE-PCM 时,出口温度降低了 6-15°C。与没有 NE-PCM 的系统相比,在 0.05kg/s 时,SAH 效率提高了 29.62%。在 0.05kg/s 时,带有 NE-PCM 的系统的最大热效率为 62.66%,在相同条件下,压力降为 6.79kPa。众所周知,热空气可用于多种用途,包括空间加热、食品加工、水果、蔬菜、奶制品和太阳能烹饪的干燥。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a6a/9892120/cecc10ef9875/11356_2022_22462_Fig1_HTML.jpg

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