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Quantitative Experimental Study of SiO_2-Water Nanofluids on Backward-Facing Step Flow under Low Reynolds Number

机译:低雷诺数下的SiO_2-水纳米流体对后面的步长流动的定量实验研究

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Nanofluids is an innovative study of nanotechnology applied to the traditional field of thermal engineering. It refers to the metal or non-metallic nanopowder was dispersed into water, alcohol, oil and other traditional heat transfer medium, to prepared as a new heat transfer medium with high thermal conductivity. The role of nanofluids in strengthening heat transfer has been confirmed by a large number of experimental studies. Its heat transfer mechanism is mainly divided into two aspects. On the one hand, the addition of nanoparticles enhances the thermal conductivity. On the other hand, due to the interaction between the nanoparticles and base fluid causing the changes in the flow characteristics, which is also the main factor affecting the heat transfer of nanofluids. Therefore, a intensive study on the flow characteristics of nanofluids will make the study of heat transfer more meaningful. In this experiment, the flow characteristics of SiO_2-water nanofluids in two-dimensional backward step flow are quantitatively studied by PIV. The results show that under the same Reynolds number, the turbulence of nanofluids is larger than that of pure water. With the increase of nanofluids volume fraction, the flow characteristics are constantly changing. The quantitative analysis proved that the nanofluids disturbance was enhanced compared with the base liquid, which resulting in the heat transfer enhancement.
机译:纳米流体是对纳米技术应用于传统的热工程领域的创新研究。它是指金属或非金属纳米粉末分散到水中,醇,油和其他传统传热介质中,以制备具有高导热率的新型传热介质。通过大量的实验研究证实了纳米流体在加强热传递中的作用。其传热机制主要分为两个方面。一方面,添加纳米颗粒增强了导热率。另一方面,由于纳米颗粒和基础流体之间的相互作用导致流动特性的变化,这也是影响纳米流体的热传递的主要因素。因此,对纳米流体的流动特性的密集研究将使热传递的研究更加有意义。在该实验中,通过PIV定量地研究了二维向后步骤流动中的SiO_2-水纳米流体的流动特性。结果表明,在相同的雷诺数下,纳米流体的湍流大于纯水的湍流。随着纳米流体体积分数的增加,流动特性是不断变化的。定量分析证明,与基础液体相比,纳米流体干扰增强,从而导致传热增强。

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