首页> 外文期刊>International Journal of Heat and Mass Transfer >Frosting and defrosting assessment of carbon fiber reinforced polymer composite with surface wettability and resistive heating characteristics
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Frosting and defrosting assessment of carbon fiber reinforced polymer composite with surface wettability and resistive heating characteristics

机译:具有表面润湿性和电阻加热特性的碳纤维增强聚合物复合材料的结霜和除霜评估

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摘要

The thermal performance of air source heat pump (ASHP) is considerably affected by frost formation due to fin gap blockage and increased thermal resistance. Carbon fiber reinforced polymer composites (CFRP) have emerged as potential materials that can be used to fabricate lightweight polymer-based fins for ASHP. For practical application, the frosting and defrosting performance of CFRP should be investigated in terms of their effective resistive heating characteristics. Therefore, a sample CFRP fin was used to experimentally investigate its frosting and defrosting behavior corresponding to its inclination angle, applied heat flux, and surface wettability. This experiment helped understand the CFRP thermal performance under extreme winter conditions. The results demonstrated that the frost thickness increased while the density of frost decreased at higher inclination angles. For the surface-treated samples, frost thickness was highest for the bare CFRP sample, followed by hydrophobic and hydrophilic samples. For the defrosting experiment of vertical bare sample, the water retention ratio decreased with an increase in heat flux and inclination angle. For the surface-treated samples, the retention ratio was lowest for the hydrophobic sample due to surface wettability and highest for the bare sample. The hydrophobic sample exhibited the lowest time for dry-out for defrosting.
机译:由于翅片间隙堵塞和增加的热阻增加,空气源热泵(ASHP)的热性能受到霜冻形成的显着影响。碳纤维增强聚合物复合材料(CFRP)出现为潜在材料,可用于制造用于ASHP的轻质聚合物基翅片。对于实际应用,应在其有效的电阻加热特性方面对CFRP进行冻结和除霜性能。因此,使用样品CFRP鳍片来实验地研究其对应于其倾斜角度,施加的热通量和表面润湿性的其结霜和除霜行为。该实验有助于在极端冬季条件下了解CFRP热性能。结果表明,霜厚度增加,而霜的密度在较高的倾斜角下降低。对于表面处理的样品,裸CFRP样品的霜厚度最高,然后是疏水性和亲水样品。对于垂直裸样品的除霜实验,水保持比率随着热通量和倾斜角度的增加而降低。对于表面处理的样品,由于表面润湿性和裸样品最高,保持比对于疏水样品最低。疏水样品表现出干燥除霜的最低时间。

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