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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Characterizing the Stability of Carbon Nanotube-Enhanced Water as a Phase Change Material for Thermal Management Systems
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Characterizing the Stability of Carbon Nanotube-Enhanced Water as a Phase Change Material for Thermal Management Systems

机译:表征碳纳米管增强水作为热管理系统相变材料的稳定性

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摘要

Carbon nanotube (CNT) suspensions have shown promise as a heat transfer nanofluid due to their relatively high thermal conductivity and ability to remain in stable suspension for long durations. To assess their potential as a phase change material for thermal management systems, the stability of such suspensions under repeated phase change cycles is investigated. Electrical resistance testing was used to monitor stability of the CNT network during freeze-thaw cycling. With distilled water as the base fluid, the effects of CNT size and type, CNT concentration, surfactant type and concentration, and processing parameters were investigated. Nanofluids tested included laboratory-prepared and commercially supplied samples. Experiments showed breakdown of the nanofluid in less than 12 phase change cycles for all samples tested. Ultrasonication after breakdown was shown to restore resistance values to prebreakdown levels. The results suggest the use of CNT-enhanced water as a phase change material presents a significant operational challenge due to instability of the CNT network during phase change cycling. Should the use of such nanofluids be warranted as a phase change material, electrical resistance testing along with repeated ultrasonication may be considered as a means to control and monitor stability of the nanoparticle suspension in service.
机译:由于其相对高的导热性和保持稳定的悬浮液而言,碳纳米管(CNT)悬浮液作为热传递纳米流体作为传热纳米流体。为了评估其作为热管理系统的相变材料的潜力,研究了在重复相变循环下这种悬浮液的稳定性进行了研究。电阻测试用于监测冻融循环期间CNT网络的稳定性。蒸馏水作为基础流体,研究了CNT尺寸和型,CNT浓度,表面活性剂型和浓度的影响,以及加工参数。纳米流体测试包括实验室制备的和商业提供的样品。实验表明,对于所有测试的所有样品,在少于12个相变循环中显示出纳米流体的分解。故障后的超声波显示恢复耐受预折叠水平的电阻值。结果表明,由于在相变循环期间CNT网络的不稳定性,使用CNT增强的水具有显着的操作挑战。如果使用这种纳米流体作为相变材料,则可以认为具有重复超声的电阻测试以及重复超声波的方法是控制和监测纳米颗粒悬浮液中的稳定性的手段。

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