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EFFECT OF NANO-PARTICLES ON POOL BOILING HEAT TRANSFER OF REFRIGERANT 141b

机译:纳米粒子对制冷剂141B池沸腾热传递的影响

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Fluids with nano-sized particles have been proved that may effectively enhance the single-phase convective heat transfer performance. For pool boiling heat transfer, the published test results seems conflicted to each other. Some measured heat transfer coefficient decreased with increasing particle concentration but some showed no appreciable difference. This study provides an experimental investigation on pool boiling heat transfer performance of refrigerants R-141b with and without nano-sized Au particles on horizontal plain tubes. The test results show that the boiling heat transfer coefficients increase with increasing nano-particles concentration. At particles concentration of 1.0 %, the heat transfer coefficient is more than twice higher than those without nano-particles. However, the heat transfer coefficients decreased for each test after every 5 days and finally close to those of R-141b without nano-particles. The SPM investigation shows that the test tube surface roughness decreased from 0.317 μm before boiling test to 0.162 μm after test. Further investigation by TEM and Dynamic Light Scattering particle analyzer shows that the nano-particles aggregated from 3 nm before test to 110 nm after test. This results show that the nano-sized Au particles are able to significantly increase pool boiling heat transfer of refrigerant R-141b on plain tube surface. The tube surface roughness and particle size changed after boiling test. Both of these effects degrade the boiling heat transfer coefficients.
机译:已经证明了具有纳米尺寸颗粒的流体,可有效提高单相对流传热性能。对于池沸腾的传热,已发表的测试结果似乎彼此冲突。一些测量的传热系数随着颗粒浓度的增加而降低,但有些显示没有明显的差异。本研究提供了在水平透明管上没有纳米尺寸Au颗粒的制冷剂R-141B的池沸腾传热性能的实验研究。试验结果表明,沸腾传热系数随着纳米颗粒浓度的增加而增加。在颗粒浓度为1.0%,传热系数比没有纳米颗粒的浓度高两倍。然而,每5天后每次测试的传热系数减少,最后接近R-141b的没有纳米颗粒。 SPM研究表明,试验管表面粗糙度在沸腾试验前从0.317μm降低至0.162μm。通过TEM和动态光散射粒子分析仪进一步研究表明,在试验后试验到110nm之前将纳米颗粒聚集在3nm。该结果表明,纳米尺寸的Au颗粒能够显着增加普通管表面上制冷剂R-141b的池沸腾热传递。管表面粗糙度和粒度在沸腾试验后改变。这两种效果都降低了沸腾的传热系数。

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