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Experimental assessment of Al_2O_3 and Cu nanofluids on the performance and heat leak of double pipe heat exchanger

机译:AL_2O_3和Cu纳米流体对双管热交换器性能和散热的实验评估

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摘要

The aim of the study is to experimentally investigate and compare the influence of two different nanofluids (Cu/water and Al_2O_3/ water) on the performance of a double pipe heat exchanger at different volume concentrations and flow rates. Effect of varying hot-side inlet temperature is also tested for the selected concentrations. The nanofluid, pumped on the shell-side of the heat exchanger, has a Reynolds number ranging from 7000 to 15,000 while, for each Reynolds number, the concentration of the nanoparticles ranges from 0.26% - 0.83% on volume basis. Results indicated that presence of nanoparticles within the base fluid can offer a great potential for energy transfer. Observation of experimental outcomes shows notable enhancement in the Nusselt number when increasing the mass-flow of the nanofluid. The enhancement registered for the above mentioned range of Re and concentration are up to 13% for Al_2O_3 and 23% for Cu. Experimental results show a considerable improvement in the effectiveness (up to 7% for aluminum oxide and 10% for copper). Also, the performance enhances with the augmentation of the hot-side inlet temperature. Heat leak from the shell-side (cold fluid) to atmosphere is observed to be enlarged when nanoparticle is employed and is proportionally related to the concentration. It is also monitored that the heat leak within aluminum oxide nanofluid is greater than the copper nanofluid.
机译:该研究的目的是通过在不同体积浓度和流速下进行两种不同纳米流体(Cu /水和Al_2O_3 /水)对双管热交换器的性能的影响和比较。还测试了不同热侧入口温度的效果,用于选定的浓度。纳米流体泵在热交换器的壳体上,雷诺数范围为7000至15,000,而对于每个雷诺数,纳米颗粒的浓度为0.26%-0.83%的体积。结果表明,基础流体内的纳米颗粒的存在可以提供能量转移的巨大潜力。在增加纳米流体的质量流动时,观察实验结果显示出良好的数量中的显着增强。对于UP的Re和浓度范围的增强率为Al_2O_3和Cu的23%高达13%。实验结果表明,有效性(氧化铝高达7%,铜的10%)表现出相当大的改善。此外,性能随着热侧入口温度的增强而增强。当使用纳米颗粒时,观察到从壳侧(冷流体)到大气中的热泄漏,并与浓度成比例地相关。还监测氧化铝内的热泄漏纳米流体中的热泄漏大于铜纳米流体。

著录项

  • 来源
    《Heat and mass transfer》 |2020年第6期|1845-1858|共14页
  • 作者

    Esam I. Jassim; Faizan Ahmed;

  • 作者单位

    Prince Mohammad Bin Fahd University Khobar Saudi Arabia;

    Prince Mohammad Bin Fahd University Khobar Saudi Arabia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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