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THE INFLUENCE OF NANOPARTICLE TYPE ON THE VISCOSITY OF NANOENHANCED ENERGY STORAGE MATERIALS

机译:纳米颗粒类型对纳米增强储能材料粘度的影响

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The use of nanoparticles to improve the thermal properties of low thermal conductivity phase change materials is of significant interest. However, the addition of nanoparticles to a base fluid is known to result in an increase in viscosity. An increase in viscosity can suppress convective currents, reducing overall heat transfer thus it necessary to quantify the impact of nanoparticle addition on the viscosity of a PCM. In this work nanoparticle enhanced phase change mateirals are synthesized using paraffin and three different types of nanoparticles: exfoliated graphite nanoplatelets (xGNP), multi-walled carbon nanotubes (MWCNT) and herringbone graphite nanofibers (HGNF). The particles are loaded at rates between 0.0024wt% to 0.1wt%. The viscosity is analyzed at temperatures between 60 and 100°C. The influence of temperature, nanoparticle type and nanoparticle loading level on viscosity are presented and discussed. The results show that for xGNP and HGNF within the operating condition studied here that there is no impact of the nanoparticle addition on the viscosity of the base material. However, the addition of MWCNT is found to increase the viscosity of the base fluid with the impact increasing with loading level.
机译:使用纳米颗粒来改善低导热率相变材料的热性能引起了人们的极大兴趣。然而,已知将纳米颗粒添加到基础流体中导致粘度增加。粘度的增加可以抑制对流,从而降低整体传热,因此有必要量化纳米颗粒添加对PCM粘度的影响。在这项工作中,使用石蜡和三种不同类型的纳米粒子合成了纳米粒子增强的相变材料:脱落石墨纳米片(xGNP),多壁碳纳米管(MWCNT)和人字形石墨纳米纤维(HGNF)。颗粒以0.0024重量%至0.1重量%之间的比率负载。在60至100°C的温度下分析粘度。提出并讨论了温度,纳米颗粒类型和纳米颗粒负载量对粘度的影响。结果表明,在此处研究的操作条件下,对于xGNP和HGNF,纳米颗粒的添加对基础材料的粘度没有影响。但是,发现添加MWCNT会增加基础流体的粘度,并且其冲击力会随负载水平的增加而增加。

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