Huang Kailiang, Liang Dong, Feng Guohui, Jiang Mingzhi, Zhu Yuhua, Liu Xin, Jiang Bian
School of Municipal and Environmental Engineering, Shenyang Jianzhu University, Shenyang 110168, China.
Materials (Basel). 2016 May 12;9(5):361. doi: 10.3390/ma9050361.
Organic phase change material (PCM) with macro-encapsulation is attractive in energy storage applications as it has relatively low cost. This study focuses on using PET plastic pipes to encapsulate paraffin and using low-cost float stones to increase the thermal conductivity of PCM modules as they have a special structure of high porosity. Float stones were immersed in the liquid PCM and an ultrasonic welding method used to prevent leakage of the PET plastic pipes. Scanning electron microscopy (SEM) was used to discover the appearance of the composite PCM. The thermal performance of the PCM cylinder module was analyzed through experimental tests of a constant-temperature water bath and numerical simulations. The result indicates that this PCM Ccylinder module is superior in thermal energy storage compared with the reference module even though fewer PCM was contained and the latent heat loss is considerable. The pipe diameter is an important parameter when using this kind of PCM cylinder module in water tanks.
具有宏观封装的有机相变材料(PCM)因其成本相对较低,在储能应用中颇具吸引力。本研究着重于利用PET塑料管封装石蜡,并使用低成本的浮石来提高PCM模块的热导率,因为浮石具有特殊的高孔隙率结构。将浮石浸入液态PCM中,并采用超声波焊接方法防止PET塑料管泄漏。利用扫描电子显微镜(SEM)观察复合PCM的外观。通过恒温水槽实验测试和数值模拟分析了PCM圆柱模块的热性能。结果表明,尽管该PCM圆柱模块所含的PCM较少且潜热损失较大,但与参考模块相比,其在热能存储方面表现更优。在水箱中使用这种PCM圆柱模块时,管径是一个重要参数。