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Flow and Heat Transfer Characteristics of Ammonium Alum Hydrate Slurry Treated with Surfactants

机译:用表面活性剂处理的铵铝水合物浆料的流动和传热特性

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References(15) Cited-By(3) The flow and heat transfer characteristics of an ammonium alum hydrate slurry treated with drag-reducing surfactants have been investigated experimentally. Ammonium alum hydrate has a high latent heat of 251 kJ/kg, and its fusion temperature is 51°C when the concentration of ammonium alum in water is 35 wt%. The friction coefficient and the heat transfer coefficient for melting were measured from a pipe flow with a diameter of 13 mm. From the results, it was found that the ammonium alum hydrate slurry treated with surfactants shows the effective drag reduction in a pipe flow. It was also found that the heat transfer of the slurry with the surfactants is reduced slightly; in particular, this was true in the case of a high temperature difference between the slurry and heating water flowing outside a test tube. However, the heat transfer coefficient of the slurry with surfactants divided by pressure loss was very high, and particle growth due to particle agglomeration could be reduced by the surfactants. From this, it was concluded that the ammonia alum hydrate slurry with the surfactant is a promising system as a heat transportation medium.
机译:引用(15)所引用的(3)通过实验研究了用阻力降低表面活性剂处理的氨基水合物浆料的流动和传热特性。铵铝水合物具有251kJ / kg的高潜热,当水中铵的浓度为35wt%时,其熔化温度为51℃。从直径为13mm的管道流量测量摩擦系数和传热系数。从结果中发现,用表面活性剂处理的铵胺水合物浆料显示出管道流动的有效阻力。还发现,用表面活性剂的浆料的热传递略微降低;特别地,在浆料和加热水在试管外部流动的高温差的情况下,这是真的。然而,用压力损失除以压力损失的表面活性剂的浆料的传热系数非常高,并且可以通过表面活性剂降低由于颗粒附聚引起的颗粒生长。由此,得出结论是,具有表面活性剂的氨胺水合物浆料是作为热运输介质的有前途的系统。

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