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Experimental study of water-based CuO nanofluid flow in heat pipe solar collector

机译:热管太阳能收集器水基纳米流体流动的实验研究

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摘要

The main goal of this study is the experimental evaluation of the thermal performance of heat pipe solar collector (HPSC) at different high flow rates of water and CuO-water nanofluid with various volume fractions. In this regard, a test bench of the HPSC was manufactured and tested in the laboratory of Vali-e-Asr University, while the co-precipitation method was used to prepare CuO nanoparticles. The structural and optical properties of the nanostructure were characterized by means of X-ray diffraction, Fourier transform infrared spectroscopy, scanning electron microscopy, and UV-visible analysis. The collector efficiency and pumping power were calculated for nanofluids, and the results were compared with ones of water working fluid; based on the experimental results, copper oxide nanofluid and deionized water at a volume fraction of 0.017 and a flow rate of 14 L min(-1) yields the greatest improvement in the efficiency of the solar collector. The results also showed that the efficiency of solar collector increases with the flow rate and the volume fraction of the nanofluid.
机译:本研究的主要目的是热管太阳能收集器(HPSC)热性能的实验评价,以不同体积级分的不同水和Cuo水纳米流体的不同高流量率。在这方面,在Vali-E-Asr大学的实验室制造并测试了HPSC的测试台,同时使用共析出方法制备CuO纳米颗粒。通过X射线衍射,傅里叶变换红外光谱,扫描电子显微镜和UV可见分析,表征纳米结构的结构和光学性质。为纳米流体计算收集器效率和泵送电力,并将结果与​​水工作液中的结果进行比较;基于实验结果,在0.017的体积分数下氧化铜纳米流体和去离子水和14L min(-1)的流速产生最大的太阳能收集器效率的最大改善。结果还表明,太阳能收集器的效率随纳米流体的流速和体积分数而增加。

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