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EXPERIMENTAL INVESTIGATION OF MAGNETIC FIELD EFFECT ON THE MAGNETIC NANOFLUID OSCILLATING HEAT PIPE

机译:磁场对纳米流体振荡热管的磁场影响的实验研究

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The magnetic field effect on the oscillating motion and heat transfer in an oscillating heat pipe (OHP) containing magnetic nanofluid was investigated experimentally. The nanofluid consists of distilled water and Dysprosium (III) oxide nanoparticles with sizes less than 100 nm. A magnetic field was applied to the evaporating section of the OHP by using the permanent magnet. The heat pipes charged with magnetic nanofluids at mass ratios of 0.1%, 0.05%, and 0.01%, respectively, were tested. In addition, the effects of orientation and input power ranging from 50 W to 250 W on the heat transport capability of the heat pipe were investigated. The experimental results demonstrate that the magnetic field can affect the oscillating motions and enhance the heat transfer performance of the magnetic nanofluid OHP. The magnetic nanoparticles in a magnetic field can reduce the startup power of oscillating motion and enhance the heat transfer performance in a low input power.
机译:实验研究了磁场对包含磁性纳米流体的振荡热管(OHP)中的振荡运动和传热的影响。纳米流体由蒸馏水和​​尺寸小于100 nm的氧化Dy(III)纳米颗粒组成。通过使用永磁体将磁场施加到OHP的蒸发部分。测试装有质量比例分别为0.1%,0.05%和0.01%的磁性纳米流体的热管。另外,研究了取向和输入功率在50 W至250 W之间对热管传热能力的影响。实验结果表明,磁场可以影响振荡运动并增强磁性纳米流体OHP的传热性能。磁场中的磁性纳米颗粒可以降低振荡运动的启动功率,并在低输入功率下增强传热性能。

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