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Experimental investigation of transient thermal response of phase change material embedded by Graphene nanoparticles in energy storage module

机译:储能组件中石墨烯纳米粒子嵌入相变材料瞬态热响应的实验研究。

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Here, an experimental study has been conducted to evaluate thermal performance and energy storage capabilities of organic paraffin wax with melting point of 95 °C embedded at various loadings of Graphene nanoplatelets (0, 1, 3, 5, 7, 10 wt. %). All experiments were carried out in a cubical aluminium box with the dimensions of 40×40×40 in mm. Temperature measurements were carried out at different locations within the module by using J type thermocouples. Due to the low thermal conductivity of pure paraffin wax, temperature variations among the measured locations are relatively high. On the other hand as the loading of Graphene nanoplatelets within the paraffin wax is increased, temperature differences within the thermal energy storage (TES) module is decreased significantly and almost reach uniform at the highest mass fraction used, 10 wt. %. The results obtained from experiments indicate that a Graphene/paraffin wax composite is an effective method for the thermal management of devices that operates transiently.
机译:在这里,已经进行了一项实验研究,以评估在不同石墨烯负载量(0、1、3、5、7、10 wt。%)下嵌入的熔点为95°C的有机石蜡的热性能和储能能力。所有实验均在尺寸为40×40×40毫米的立方铝箱中进行。通过使用J型热电偶在模块内的不同位置进行温度测量。由于纯石蜡的低热导率,被测位置之间的温度变化相对较高。另一方面,随着石蜡中石墨烯纳米片的负载增加,热能存储(TES)模块内的温差显着降低,并且在使用的最高质量分数10 wt。%时几乎达到均匀。 %。从实验中获得的结果表明,石墨烯/石蜡复合材料是一种有效管理瞬态运行器件的有效方法。

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