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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Experimental investigation of the effect of multi-wall carbon nanotube - Water/glycol based nanofluids on a PVT system integrated with PCM-covered collector
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Experimental investigation of the effect of multi-wall carbon nanotube - Water/glycol based nanofluids on a PVT system integrated with PCM-covered collector

机译:基于PCM覆盖收集器的多壁碳纳米管 - 水/二醇基于PVT系统的纳米流体效应的实验研究

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摘要

A hybrid PVT/PCM system is constructed to experimentally examine the effect of water/glycol-based nanofluids as active cooling media and organic paraffin wax (PCM) as passive cooling medium. Multi-wall carbon nanotubes (MWCNT) are considered as the nanoparticles, due to their high thermal conductivity that allows using a lower concentration of these nanoparticles and reduces the flow pressure drop and pumping power consumption. The electrical and thermal performances of the PVT/PCM system are evaluated regarding energy and exergy views compared to the experimental results of a conventional PV module (without a thermal collector). The exergy destructions and external exergy losses are also evaluated based on their contributing factors. The best performance of PVT/PCM panel in terms of relative enhancement of the electrical energetic and exergetic efficiencies is obtained for the MWCNT/water nanofluid. Dispersion of MWCNT nanoparticles in the water base fluid increases the thermal and electrical energetic efficiencies up to 23.58% and 4.21%, respectively as compared to those of pure water as coolant fluid. A corresponding enhancement is also observed for the electrical and particularly the thermal exergetic efficiencies. The major influencing factors for external exergy losses and exergy destructions of the system are found to be heat dissipation from the PVT panel to surrounding and sun-PVT surface temperature difference, respectively.
机译:构建混合动力PVT / PCM系统以通过作为无源冷却介质为有源冷却介质和有机石蜡(PCM)作为主动冷却介质和有机石蜡(PCM)的水/二醇的纳米流体的效果。多壁碳纳米管(MWCNT)被认为是纳米颗粒,由于它们的高导热率,其允许使用这些纳米颗粒的较低浓度并降低流量降低和泵送功耗。与传统PV模块(没有热集电极)的实验结果相比,评估PVT / PCM系统的电气和热性能。基于其贡献因素,还评估了漏洞的破坏和外部漏洞。对于MWCNT /水纳米流体获得了PVT / PCM面板的最佳性能。与纯水作为冷却剂流体相比,MWCNT纳米颗粒在水基础液中的分散量增加了高达23.58%和4.21%的热量和电能效率。还可以观察到相应的增强用于电气,特别是热锻炼效率。发现外部漏洞损失和漏洞破坏的主要影响因素分别从PVT面板到周围和太阳PVT表面温度差异的散热。

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