Issues of Development of Solar Collectors with High Efficiency

M. Uzbekov
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Abstract

The article deals with the creation of energy-efficient solar water collectors. In order to develop energy-efficient solar water collectors (SWC), methods of rational enhancement of heat transfer in the channels of the collectors are proposed. It is noted that the methods used to increase heat transfer from the collector walls to the water should be tailored to a low-speed flow of the heat carrier. With such flow regimes, the most acceptable ways to enhance heat transfer are: flow swirling, the use of artificial roughness, renewal of the hydrodynamic boundary layer through the creation of an alternating pressure gradient in the flow. The analysis of the conducted research shows that the maximum effects of increasing heat transfer occur in the range of Re numbers from 2000 to 8000, i. e. in the laminar flow region and in the region of underdeveloped turbulence. An efficiency criterion is obtained for the conditions under which enhancers are installed inside the pipes. The criterion determines the ratio of the number of pipes with enhancers to the number of smooth pipes. The calculation is carried out for cases in which the heating capacity, flow rate, power for heat carrier circulation and the pipe diameter of the SWC with smooth pipes are equal to the heating capacity, flow rate, power for heat carrier circulation and pipe diameter of the SWC with the pipes with enhancers. In addition to the specified efficiency criterion of the SWC, a heat transfer comparison formula of the SWC having pipes with enhancers and SWC with smooth pipes is obtained
高效太阳能集热器的发展问题
本文讨论了节能太阳能集水器的研制。为了开发高效节能的太阳能集热器,提出了合理加强集热器通道传热的方法。值得注意的是,用于增加从集热器壁到水的热传递的方法应适合于热载体的低速流动。在这种流动状态下,最可接受的增强传热的方法是:流动旋流,使用人工粗糙度,通过在流动中创造交替压力梯度来更新流体动力边界层。研究结果表明,在2000 ~ 8000雷诺数范围内,即层流区和欠发达湍流区,增加换热的效果最大。得到了在管道内安装增强器的条件下的效率准则。该准则决定了带有增强剂的管道数量与光滑管道数量的比率。在光滑管道的SWC的热容量、流量、热载体循环功率和管径等于带增强剂管道的SWC的热容量、流量、热载体循环功率和管径的情况下进行计算。在此基础上,推导出了带增强剂管道的SWC与带光滑管道的SWC的传热比较公式
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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