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EXPERIMENTAL INVESTIGATIONS ON LATENT HEAT STORAGE UNIT USING PARAFFIN WAX AS PHASE CHANGE MATERIAL

机译:用石蜡作为相变材料对潜热存储单元的实验研究

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摘要

Thermal performance of a latent heat storage unit is evaluated experimentally. The latent heat thermal energy storage system analyzed in this work is a shell-and-tube type of heat exchanger using paraffin wax (melting point between 58℃ and 60℃) as the phase change material. The temperature distribution in the phase change material is measured with time. The influence of mass flow rate and inlet temperature of the heat transfer fluid on heat fraction is examined for both the melting and solidification processes. The mass flow rate of heat transfer fluid (water) is varied in the range of 0.0167 kg/s to 0.0833 kg/s (1 kg/min to 5 kg/min), and the fluid inlet temperature is varied between 75℃ and 85℃. The experimental results indicate that the total melting time of the phase change material increases as the mass flow rate and inlet temperature of heat transfer fluid decrease. The fluid inlet temperature influences the heat fraction considerably as compared to the mass flow rate of heat transfer fluid during the melting process of the phase change material.
机译:通过实验评估潜热存储单元的热性能。本文分析的潜热储热系统是壳管式换热器,以石蜡(熔点为58℃至60℃)为相变材料。相变材料中的温度分布随时间测量。对于熔化过程和凝固过程,都检查了传热流体的质量流量和入口温度对热量的影响。传热流体(水)的质量流量在0.0167 kg / s至0.0833 kg / s(1 kg / min至5 kg / min)的范围内变化,流体入口温度在75℃至85℃之间变化℃。实验结果表明,相变材料的总熔化时间随着传热流体的质量流量和入口温度的降低而增加。与相变材料熔化过程中传热流体的质量流量相比,流体入口温度对热量分数的影响很大。

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