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Design and Testing of a Shell-Encapsulated Solar Collector with the Compound Surface Concentrators

机译:具有复合表面聚光器的壳封装太阳能集热器的设计和测试

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This paper presents design and testing of a shell-encapsulated solar collector which can be used in north area of China for wall-amounting installation. The designed solar collector is based on the combination of a novel compound curved surface concentrator and an aluminum concentric solar receiver, which is contained in a glass evacuated-tube. As there is no perforative joint between the double-skin glass evacuated-tube and the aluminum concentric solar receiver, the difficulty of vacuum keeping for a glass-metal joint is avoided. The cavity shell provides an additional thermal insulation to reduce heat loss of the designed solar collector. The working principle of the compound curved surface concentrator is described. The ray-tracing results are given to show the effect of deviation angle of the concentrator on its optical efficiency, hence determining its maximum acceptance angle. A prototype of the designed solar collector has been constructed and tested under the sunny winter weather condition. The experimental results indicate that the hot water temperature higher than 80°C with a daily average efficiency of about 45~50% has been achieved at the average ambient temperature below 0°C, so the designed solar collector can produce hot water at a useful temperature in winter.
机译:本文介绍了一种外壳封装的太阳能集热器的设计和测试,该集热器可在中国北方地区用于壁挂安装。设计的太阳能收集器是基于新型复合曲面集中器和铝同心太阳能接收器的组合,该铝接收器包含在玻璃真空管中。由于在双层玻璃真空管和铝同心太阳能接收器之间没有穿孔接头,因此避免了玻璃-金属接头保持真空的困难。腔体外壳提供了额外的热绝缘,以减少设计的太阳能收集器的热损失。描述了复合曲面集中器的工作原理。给出的光线跟踪结果显示聚光器偏角对其光学效率的影响,从而确定其最大接收角。已设计出太阳能收集器的原型,并在冬季阳光充足的条件下进行了测试。实验结果表明,在平均环境温度低于0°C的情况下,热水温度达到80°C以上,日平均效率约为45〜50%,因此设计的太阳能集热器可以产生有用的热水。冬天的温度。

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