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Thermal performances and characteristics of thermosyphon heat pipe using alumina nanofluids

机译:使用氧化铝纳米流体热悬浮烃热管的热性能和特性

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摘要

The thermal performance of a double tube two-phase closed thermosyphon (DTTPCT) using alumina nanofluid as working fluid in startup, steady state and shut down modes has been experimentally and theoretically evaluated. Gamma-Alumina (γ-Al_2O_3) nanoparticles with size of 40 nm were well dispersed, prepared and stabilized in distilled water base fluid at different particle concentrations.The axial wall temperature distribution, the nanofluid temperature along the thermosyphon, the thermal conductivity and overall heat transfer coefficient were investigated to propose the best combination of parameters by varying parameters such as concentration of nanoparticles, heat load on heat pipe. The effect of nanofluid volume fraction of 0.5%, 1.0%, 1.5%, and 2.0% with heat load of 500 W, 750 W, 1000 W and 1250 W on the overall thermal conductivity of the heat pipe were studied to evaluate the optimal thermal performance. The results indicate that the DTTPCT filled with alumina nanofluid in 2% volume fraction yields higher thermal performance when it is operated at 1000 W heat load. The experimental results show that the optimal thermal performance of TPCT filled with Al_2O_3/water nanofluid at a heat load of 1000 W is 3 times better than that of pipes using distilled water as the working fluid. Theoretical model describing both thermal performance and phase flow of the DTTPCT has been compared with the experimental results at start-up, steady-state and shut-down modes.
机译:使用氧化铝纳米流体作为起动工作流体的双管两相封闭热辛磷(DTTPCT)的热性能已经在实验和理论上评估了稳定状态和关闭模式。 γ-氧化铝(γ-Al_2O_3)尺寸为40nm的纳米颗粒,在不同的颗粒浓度下在蒸馏水基础流体中进行良好分散,制备和稳定。轴向壁温度分布,沿着热循环的纳米流体温度,导热率和总热量研究了转移系数通过改变参数,例如纳米颗粒的浓度,热管上的热负荷,提出最佳参数组合。研究了纳米流体体积分数0.5%,1.0%,1.5%和2.0%的热负荷在热管的总导热率上的热负荷进行热负荷,以评估最佳热量表现。结果表明,当在1000W热负荷下操作时,填充含有氧化铝纳米流体的DTTPCT含有氧化铝纳米流体的热性能较高。实验结果表明,在1000W的热负荷下填充有Al_2O_3 /水纳米流体的TPCT的最佳热性能是使用蒸馏水作为工作流体的管道的3倍。描述了DTTPCT的热性能和相流的理论模型,并与启动,稳态和关闭模式的实验结果进行了比较。

著录项

  • 来源
    《Heat and mass transfer》 |2021年第8期|1275-1287|共13页
  • 作者单位

    Nuclear Reactors Department NRC Egyptian Atomic Energy Authority Cairo Egypt;

    Department of Nuclear Safety Research and Radiological Emergencies - NCRRT Cairo Egypt;

    Experimental Nuclear Physics & Cyclotron Facility NRC Egyptian Atomic Energy Authority Cairo 13759 Egypt;

  • 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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