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Experimental investigation of thermophysical properties and heat transfer rate of covalently functionalized MWCNT in an annular heat exchanger

机译:共价官能化多壁碳纳米管在环形换热器中的热物理性质和传热速率的实验研究

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摘要

In a novel direct amidation, multi-walled carbon nanotubes (MWCNT) is covalently functionalized with aspartic acid (Asp) to achieve a highly dispersed colloidal suspension including MWCNT. After investigation of colloidal stability of functionalized MWCNT with Asp (MWCNT-Asp) in aqueous media by UV-Vis spectroscopy, less than 20% sediment was occurred for highest weight concentration of 0.1%. The prepared coolants had some promising properties such as high thermal conductivity as compared with base fluid. Also, thermophyisical properties were investigated to check its suitability. The prepared water-based coolants with different weight fractions of MWCNT-Asp were experimentally investigated in terms of heat transfer rate in a horizontal annular heat exchanger. Forced convection heat transfer coefficient and pressure drop were investigated in transition and turbulent regimes for three different heat fluxes and four weight fractions. Annular heat exchanger showed a significant increase in heat transfer rate. Also poor change in the pressure drop in the presence of different weight concentrations provides a suitable condition for this novel alternative coolant. Also, insignificant increase in pumping power was obtained, which shows its suitability for industrial applications.
机译:在新颖的直接酰胺化中,将多壁碳纳米管(MWCNT)与天冬氨酸(Asp)共价官能化,以实现包括MWCNT在内的高度分散的胶体悬浮液。通过UV-Vis光谱研究了带有Asp(MWCNT-Asp)的功能化MWCNT在水性介质中的胶体稳定性,对于最高重量浓度为0.1%的沉积物,发生少于20%的沉淀。与基础流体相比,所制备的冷却剂具有一些有希望的性能,例如高导热性。另外,研究了热物理性质以检查其适用性。根据卧式环形换热器中的传热率,对制备的具有不同重量分数的MWCNT-Asp的水基冷却剂进行了实验研究。在三种不同的热通量和四种重量分数的过渡态和湍流态下,研究了强迫对流换热系数和压降。环形热交换器显示出传热速率的显着提高。在存在不同重量浓度的情况下,压降的不良变化也为这种新颖的替代冷却剂提供了合适的条件。另外,泵浦功率的增加很小,这表明它适用于工业应用。

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