六水氯化镁(MgCl2.6H2O)潜热储能系统与家用燃气加热器的实验研究

Fawad Ahmed, A. Waqas
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引用次数: 1

摘要

热能储存是一个活跃的研究领域,可以在传统系统的热应用中采用能源效率和节约。此外,就可用性而言,它们与可再生资源一起使用同样有效,以减轻其间歇性。本文对以六水氯化镁(MgCl2.6H2O)为储热材料的潜热储能系统进行了实验研究。文献表明,MgCl2.6H2O在中等范围内具有较强的储热性能,其熔融温度为117.5℃,潜热为168.6 kJ/kg。采用铝封装和PCM对燃气加热器进行测试。家用燃气加热器的火焰温度在600 ~ 800℃之间,在此温度下,PCM在不到900s的时间内充满电,并存储了约30kj的热能,直到材料的最终温度达到320℃。在放电阶段,观察到过冷现象,材料在930s内释放热能至60℃的阈值温度。本研究考虑直接接触TES系统。
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Experimental Investigation Of Using Latent Thermal Energy Storage System Comprising Of Magnesium Chloride Hexahydrate (MgCl2.6H2O) With Domestic Gas Heater
Thermal energy storage is an active field of research that can be adopted for energy efficiency and conservation in thermal applications on conventional systems. Moreover, they are equally effective to be used with renewable resources to mitigate their intermittency in terms of availability. This paper covers the experimental investigation of the latent thermal energy storage system, in which Magnesium Chloride Hexahydrate (MgCl2.6H2O) was used as thermal energy storage material. Literature lists MgCl2.6H2O as a strong candidate for thermal energy storage in the medium range with melting temperature of 117.5° C and latent heat of 168.6 kJ/kg. Aluminum encapsulation was used with PCM for testing with gas heater. The flame temperature of domestic gas heater ranges from 600 to 800° C, at this temperature the PCM was fully charged in less than 900s and stored about 30 kJ of thermal energy till the final temperature of the material reached to 320° C. In the discharging phase, subcooling was observed and the material released thermal energy to a threshold temperature of 60° C in 930s. This study considered the direct contact TES system.
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