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ANALYSIS ON THE SUITABLE WORKING TEMPERATURE RANGE OF NANOFLUID-BASED DIRECT ABSORPTION SOLAR COLLECTION

机译:基于纳米流体的直接吸收太阳能集合体的适宜工作温度范围分析

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摘要

Solar energy is often used as heat source in the refrigeration and heating system and the solar collector is the core device of solar energy heat utilization system. To solve the technical bottleneck of the coated metal-glass evacuated tube in solar medium-temperature collection, a novel solar medium-temperature heat collection method named Direct Absorption Collection (DAC) was proposed. Nanofluid with strong solar light absorption properties as working fluid, and transparent vacuum tubes without coating was employed as solar absorber tubes. Compared with conventional solar absorber with selective coating, the solar DAC was theoretically modeled and simulated for its collection performance. The models were verified to be credible by experimental results. Both the simulative and experimental results indicated that the collection efficiency of DAC was higher than conventional coated solar absorber under a certain working temperature range. Furthermore, the performances of DAC and conventional solar collector under different operating conditions were simulated and comparatively analyzed. The suitable working temperature range of the proposed DAC under different were also obtained, providing a theoretical basis for the application of DAC.
机译:太阳能在制冷和供暖系统中经常被用作热源,而集热器是太阳能热利用系统的核心设备。为了解决金属玻璃真空管在太阳能中温收集中的技术瓶颈,提出了一种新的太阳能中温集热方法,即直接吸收收集(DAC)。具有强太阳光吸收性能的纳米流体作为工作流体,无涂层的透明真空管被用作太阳吸收管。与具有选择性涂层的常规太阳能吸收器相比,从理论上对太阳能DAC的收集性能进行了建模和仿真。实验结果证明该模型是可信的。仿真和实验结果均表明,在一定工作温度范围内,DAC的收集效率高于传统的涂层太阳能吸收器。此外,对DAC和常规太阳能收集器在不同工作条件下的性能进行了仿真和比较分析。还获得了所建议的DAC在不同环境下的合适工作温度范围,为DAC的应用提供了理论依据。

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