首页> 外文期刊>International Journal of Mechanical Sciences >Efficacy of a new graphene-platinum nanofluid in tubes fitted with single and twin twisted tapes regarding counter and co-swirling flows for efficient use of energy
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Efficacy of a new graphene-platinum nanofluid in tubes fitted with single and twin twisted tapes regarding counter and co-swirling flows for efficient use of energy

机译:一种新的石墨烯 - 铂纳米流体在具有单捻和双捻胶带的管中的疗效,用于计数器和共旋流动,以有效地利用能量

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摘要

Hydrothermal attributes and energy efficiency of a new graphene-platinum nanofluid in tubes fitted with different twisted tapes are numerically investigated. The configurations under study include single twisted tape (ST), twin co-twisted tapes (CoTs) and twin counter twisted tapes (CTs) causing counter or co-swirling flows. The twin tapes generate two strong swirl flows, while the single tape creates only one swirl flow. With the concentration increment, pumping power and heat transfer augment in all configurations. Heat transfer rate of tube fitted with CTs is considerably higher than that of other configurations. Besides, the tube fitted with CoTs demonstrates highest pumping power because of greater residence time. At lower twisted ratios, swirl flows and turbulence kinetic energy are more significant and consequently, pressure drop and heat transfer rate are more intense. It is shown that particles path is longer at lower twisted ratios. Figure of merit, which shows ratio of heat transfer enhancement to pressure drop increment, is higher than unity for CTs and CoTs, and lower than unity for ST. Moreover, the twin tapes demonstrate greater merit at higher twisted ratios. Finally, it is recommended to use the CTs with higher twisted ratios to improve the heat transfer with minimum energy consumption.
机译:在配有不同扭曲胶带的管中的新石墨烯-铂纳米流体的水热属性和能量效率进行了数值研究。研究下的配置包括单捻胶带(ST),双扭曲胶带(COTS)和双反扭曲胶带(CTS),导致计数器或共旋流。双磁带生成两个强旋流流,而单个磁带仅创建一个旋流。浓度增量,泵送电源和传热增强在所有配置中。装有CTS的管的传热速率远高于其他配置。此外,装有COTS的管子由于更大的停留时间而展示了最高的泵送电力。在较低的双绞线上,旋流和湍流动能更显着,因此,压降和传热速率更加强烈。结果表明,颗粒路径较长较低的扭曲比率。显示热传递增强与压降增量的比例的数字,高于CTS和COTS的Unity,并且低于ST的Unity。此外,双胶带以较高的扭曲比率表现出更大的优点。最后,建议使用具有更高扭曲比率的CTS来改善具有最小能耗的热传递。

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