首页> 外文会议>IIR Conference on Phase-Change Materials and Slurries for Refrigeration and Air Conditioning >FLOW AND HEAT TRANSFER CHARACTERISTICS OF AMMONIUM ALUM HYDRATE SLURRIES
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FLOW AND HEAT TRANSFER CHARACTERISTICS OF AMMONIUM ALUM HYDRATE SLURRIES

机译:铵水合物浆料的流动和传热特性

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Flow and heat transfer characteristics of ammonium alum hydrate slurries have been investigated. Ammonium alum hydrate has high latent heat of 251 kJ/kg and its fusion temperature is 51°C when the concentration of ammonium alum in water was set at 35 wt%. The friction and the melting heat transfer coefficients were measured in a pipe flow with 13 mm of diameter. From the results, it was found that the friction coefficient of ammonium alum hydrate slurry shows almost the same value as that of water. On the other hand, the slurry shows higher heat transfer than that of water. Especially, the heat transfer enhanced rate becomes high when the temperature difference between the slurry and the heating flow was set small. This is because of the temperature sustainability of phase change material slurries. From this, it was concluded that ammonium alum hydrate slurry can be a promising candidate for a heating system.
机译:研究了氨基铵水合物浆料的流动和传热特性。氨基水合物具有高潜热的251 kJ / kg,当水中的氨基铵浓度为35wt%时,其熔化温度为51℃。在具有13mm直径的管道流中测量摩擦和熔融传热系数。从结果中发现,氨基铵水合物浆料的摩擦系数几乎与水的值相同。另一方面,浆料显示出比水的热传递更高。特别地,当浆料和加热流程之间的温差较小时,传热增强的速率变高。这是因为相变材料浆料的温度可持续性。由此,得出结论,氨基水合物浆料可以是加热系统的有希望的候选者。

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