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首页> 外文期刊>Journal of nanomaterials >Multiwalled Carbon Nanotube Nanofluids Used for Heat Dissipation in Hybrid Green Energy Systems
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Multiwalled Carbon Nanotube Nanofluids Used for Heat Dissipation in Hybrid Green Energy Systems

机译:用于杂交绿能系统的散热型多壁碳纳米管纳米流体

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摘要

This study was conducted to characterize carbon nanotube (CNT)/water nanofluids (CNWNFs) and to apply the nanofluids in a heat-dissipation system of dual green energy sources. CNTs were mixed with water in weight fractions of 0.125%, 0.25%, and 0.5% to produce nanofluids. The thermal conductivity, density, viscosity, and specific heat of the nanofluids were measured. An experimental platform consisting of a simulated dual energy source and a microchip controller was established to evaluate the heat-dissipation performance. Two indices, the heat dissipation enhancement ratio and specific heat dissipation enhancement ratio (SHDER), were defined and calculated. The CNWNFs with a CNT concentration of 0.125 wt.% were used because they exhibited the highest SHDER. The steady-state performance was evaluated at 2 flow rates, 11 hybrid flow ratios, and 3 heating ratios for a total power of 1000 W. The transient behavior of the energy sources at preset optimal temperatures was examined, and the CNWNFs exhibited average increases in stability and heat dissipation efficiency of 36.2% and 5%, respectively, compared with water. This nanofluid heat-dissipation system is expected to be integrated with real dual energy sources in the near future.
机译:本研究进行了表征碳纳米管(CNT)/水纳米流体(CNWNF)并在双绿能源的散热系统中施加纳米流体。将CNT加入0.125%,0.25%和0.5%的重量级分的水中,以产生纳米流体。测量纳米流体的导热性,密度,粘度和比热量。建立了一种由模拟双能源和微芯片控制器组成的实验平台以评估散热性能。定义和计算了两个指数,散热增强比和特定的散热增强比(颤动)。 CNWNF具有0.125重量%的CNT浓度。%使用,因为它们表现出最高的晶。以2个流速,11个混合流量比和3个加热比评价稳态性能,总功率为1000W。检查预设最佳温度下的能量源的瞬态行为,CNWNFS表现出平均增加与水相比,稳定性和散热效率分别为36.2%和5%。该纳米流体散热系统预计将在不久的将来与真正的双能源集成。

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