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首页> 外文期刊>Heat and mass transfer >Temporal deterioration in thermal performance of screen mesh wick straight heat pipe using surfactant free aqueous nanofluids
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Temporal deterioration in thermal performance of screen mesh wick straight heat pipe using surfactant free aqueous nanofluids

机译:使用不含表面活性剂的水性纳米流体的筛网灯芯直热管的热性能随时间的变化

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摘要

The study investigates the temporal performance of heat pipe using surfactant free Al_2O_3/De-ionised water nanofluids. The nanofluids prone to agglomeration and sedimentation with time are expected to influence the performance of heat pipe. Specially fabricated heat pipe is made to accommodate vapor velocity fluctuation through the vapor core and the end cap brazing effects. The heat pipe filled up to 40 % of the evaporator volume is tested at increasing volume concentration (0.005, 0.05, 0.5, 1 vol%) of Al_2O_3/De-ionised water nanofluid. The thermal performance of heat pipe is tested at three watt loads of heat input (12, 32, 72 W) and after successive durations (0, 3, 6, 9 months) from the date of manufacturing with non operational time span. The results are compared after successive time intervals and with deionised water as working fluid. Despite higher thermal performance of heat pipe observed using nanofluids as working fluids, consistency and reliability in heat pipe operating characteristics has been observed at high watt load heat input of 72 W as compared to low watt heat of 12 W. The thermal performance improvement of heat pipe using the nanofluid resulted due to nano-coating of A1_2O_3 nanoparticles on the mesh, resulting in localized high vapor pressure caused by the subsequent intermittent accelerated flow, reduction of contact angle and enhancement in boiling limit.
机译:该研究研究了使用不含表面活性剂的Al_2O_3 /去离子水纳米流体的热管的时间性能。随着时间的流逝,易于聚集和沉淀的纳米流体有望影响热管的性能。专门制造的热管可适应通过蒸汽芯和端盖铜焊效果的蒸汽速度波动。在增加的Al_2O_3 /去离子水纳米流体的体积浓度(0.005、0.05、0.5、1体积%)下测试填充至蒸发器体积40%的热管。自生产之日起,在非工作时间范围内,在输入功率为3瓦的热输入功率(12、32、72 W)以及连续的工期(0、3、6、9个月)之后,测试热管的热性能。在连续的时间间隔后,将结果与去离子水作为工作流体进行比较。尽管使用纳米流体作为工作流体观察到热管具有更高的热性能,但与12 W的低瓦特热量相比,在高功率负载的72 W功率输入下仍观察到热管运行特性的一致性和可靠性。使用纳米流体的管道,是由于在筛网上纳米包覆了A1_2O_3纳米颗粒,导致随后的间歇性加速流动,接触角的减小和沸腾极限的提高而导致局部高蒸气压。

著录项

  • 来源
    《Heat and mass transfer 》 |2017年第1期| 241-251| 共11页
  • 作者单位

    Department of Chemical Engineering, Thapar University, Patiala, Punjab 147004, India;

    Department of Chemical Engineering, Thapar University, Patiala, Punjab 147004, India;

    Heat Transfer and Thermal Power Lab, Department of Mechanical Engineering, Indian Institute of Technology Madras, Chennai 600036, India;

  • 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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