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Effective thermal conductivities of a novel fuzzy carbon fiber heat exchanger containing wavy carbon nanotubes

机译:包含波浪形碳纳米管的新型模糊碳纤维换热器的有效导热系数

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摘要

A novel fuzzy carbon fiber heat exchanger (FFHE) is proposed in this study. The novel constructional feature of the FFHE is that the sinusoidally wavy carbon nanotubes (CNTs) are radially grown on the outer circumferential surface of the hollow cylindrical carbon fiber (HCF) heat exchanger. The effective thermal conductivities of the FFHE have been estimated by employing the method of cells (MOC) approach and the effective medium (EM) approach. The present study reveals that if the amplitudes of the radially grown sinusoidally wavy CNTs are parallel to the axis of the HCF then the effective axial thermal conductivity of the FFHE is significantly improved over that of the bare HCF heat exchanger (i.e., without CNTs). On the other hand, if the amplitudes of the radially grown wavy CNTs are transverse to the axis of the HCF, the effective transverse thermal conductivity of the FFHE is significantly improved over that of the bare HCF heat exchanger. It is also found that the CNT/polymer matrix interfacial thermal resistance does not affect the effective thermal conductivities of the FFHE. The present investigation suggests that exploiting the waviness of radially grown CNTs on the HCF a truly multifunctional and promising heat exchanger can be developed for advanced technological applications.
机译:本研究提出了一种新型的模糊碳纤维换热器(FFHE)。 FFHE的新颖结构特征是,正弦波状碳纳米管(CNT)径向生长在中空圆柱形碳纤维(HCF)热交换器的外圆周表面上。 FFHE的有效热导率已通过采用细胞方法(MOC)和有效介质(EM)方法进行了估算。本研究表明,如果径向生长的正弦波状CNT的幅度与HCF的轴平行,则FFHE的有效轴向导热率将比裸露的HCF热交换器(即没有CNT)显着提高。另一方面,如果径向生长的波浪状CNT的振幅垂直于HCF的轴,则FFHE的有效横向热导率比裸HCF热交换器的有效横向热导率显着提高。还发现CNT /聚合物基体的界面热阻不影响FFHE的有效导热率。目前的研究表明,利用HCF上径向生长的CNT的波纹度,可以为先进技术应用开发真正多功能且有希望的热交换器。

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