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Influences of refrigerant-based nanofluid composition and heating condition on the migration of nanoparticles during pool boiling. Part I: Experimental measurement

机译:基于制冷剂的纳米流体组成和加热条件对池沸腾过程中纳米颗粒迁移的影响。第一部分:实验测量

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摘要

Influences of refrigerant-based nanofluid composition and heating condition on the migration of nanoparticles during pool boiling were investigated experimentally. The nanoparticles include Cu (average diameters of 20, 50 and 80 nm), Al and Al_2O_3 (average diameters of 20 nm), and CuO (average diameter of 40 nm). The refrigerants include R113, R141b and n-pentane. The mass fraction of lubricating oil RB68EP is from 0 to 10 wt%, the heat flux is from 10 to 100 kWm~(-2), and the initial liquid-level height is from 1.3 to 3.4 cm. The experimental results show that the migration ratio of nanoparticles during the pool boiling of refrigerant-based nanofluid increases with the decrease of nanoparticle density, nanoparticle size, dynamic viscosity of refrigerant, mass fraction of lubricating oil or heat flux; while increases with the increase of liquid-phase density of refrigerant or initial liquid-level height.
机译:实验研究了制冷剂基纳米流体的组成和加热条件对池沸腾过程中纳米颗粒迁移的影响。纳米颗粒包括Cu(平均直径为20、50和80nm),Al和Al_2O_3(平均直径为20nm)和CuO(平均直径为40nm)。制冷剂包括R113,R141b和正戊烷。 RB68EP润滑油的质量分数为0至10 wt%,热通量为10至100 kWm〜(-2),初始液位高度为1.3至3.4 cm。实验结果表明,随着纳米颗粒密度,纳米颗粒尺寸,制冷剂动态粘度,润滑油质量分数或热通量的降低,纳米颗粒在制冷剂基纳米流体池沸腾过程中的迁移率增加。而随着制冷剂液相密度或初始液位高度的增加而增加。

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