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Experimental study on effect of magnetic fields on heat transfer performance of nanofluid heat pipe

机译:磁场对纳米流体热管传热性能影响的实验研究

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Solar water heater are manufactured throughout the world and considered an appropriate technology at present for it is a simple, economic and environmental friendly technology. The heat transfer coefficient of the heat pipe plays an interval role on the efficient of making use of solar energy. This experimental research focuses on the heat transfer performance of heat pipes by introduce the magnetic fields and Nanofluid. The experimental results show that: without magnetic field, the heat transfer rate of the heat pipe with magnetic fluid is 13.9% higher than that of traditional heat pipe; under DC magnetic field, the heat transfer rate of magnetic fluid heat pipe is improved an average of 10.6%, and that of water heat pipe is improve 6% The outcomes have proved that the heat transfer performance can be enhanced by the magnetic field and magnetic fluid. The improvement of efficiency of solar energy usage would contribute to decreasing the environment limit on application of the solar heater in a wide range.
机译:太阳能热水器在世界各地都有生产,由于它是一种简单,经济和环保的技术,因此目前被认为是一种合适的技术。热管的传热系数在利用太阳能的效率上起间隔作用。通过引入磁场和纳米流体,本实验研究集中在热管的传热性能上。实验结果表明:在没有磁场的情况下,带有磁性流体的热管的传热率比传统的热管高13.9%。在直流磁场下,磁流体热管的传热率平均提高了10.6%,水热管的传热率提高了6%。结果证明,磁场和磁场可以提高传热性能。体液。太阳能利用效率的提高将有助于在广泛范围内降低太阳能加热器应用的环境限制。

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