用于清洁能源提取的棱纹抛物型太阳能集热器传热与热性能实验分析

Arun Munusamy, Debabrata Barik
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引用次数: 0

摘要

具有肋状表面纹理的铜素管已在太阳能热水器中进行了测试,使用太阳能是满足未来能源需求的理想解决方案。太阳能集热器通过为绿色环境产生更多的能量来帮助改善热应用。本文研究了一种抛物型太阳能集热器(PTSC)加热器的性能,该加热器采用带肋状表面纹理管通道的普通管。在绿色环境的实验分析中对太阳能热水器的性能进行了评价。此外,最重要的变量是太阳辐射强度和给水流量(1.0 kg/min ~ 5.0 kg/min)。试验数据等实验结果表明,该方法提高了热效率、摩擦系数;利用对流换热、雷诺数和努塞尔数对抛物面板式太阳能热水器进行了参数计算。在流量为4 kg/min时,热效率提高约28.25%,摩擦因数提高约0.23%,对流换热系数提高约24.22%,努塞尔数提高约26.32%,比平面管平面表面提高8.25%。
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Experimental Analysis of Heat Transfer and Thermal Performance of Parabolic Type Solar Collector with Ribbed Surface Texture for Clean Energy Extraction
Copper plain tubes with ribbed surface texture have been tested in a solar water heater, The use of solar power is an ideal solution to meet future energy needs. Solar collectors aid in improving thermal applications by generating more energy for a green environment. This paper examines the performance of a Parabolic Type Solar Collector (PTSC) heater that uses a plain tube with ribbed surface texture tube channels. The performance of the solar water heater has been evaluated in experimental analysis for a green environment. Furthermore, the most important variables are solar radiation intensity and feed water flow rate (1.0 kg/min to 5.0 kg/min). Test data such as the experimental outcome of the suggested method enhances thermal efficiency, friction factor; convective heat transfer, Reynolds number, and the Nusselt number have been used to generate parametric values for parabolic plate solar water heaters. At a flow rate of 4 kg/min, the thermal efficiency was improved by about 28.25 %, the friction factor increased by about 0.23 %, the convective heat transfer coefficient was improved by 24.22%, the Nusselt number was improved by about 26.32 %, which is 8.25% greater than that of the plain tube plain surface.
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来源期刊
International Journal of Energy for a Clean Environment
International Journal of Energy for a Clean Environment Engineering-Automotive Engineering
CiteScore
3.30
自引率
0.00%
发文量
78
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