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微胶囊化甘蔗蜡相变材料的热性能及行为

Thermal properties and behavior of microencapsulated sugarcane wax phase change material.

作者信息

Tangsiriratana Ekarat, Skolpap Wanwisa, Patterson Robert J, Sriprapha Kobsak

机构信息

Department of Chemical Engineering, School of Engineering, Thammasat University, Pathumthani, 12120, Thailand.

Center of Clinical Engineering, School of Engineering, Thammasat University, Pathumthani, 12120, Thailand.

出版信息

Heliyon. 2019 Aug 19;5(8):e02184. doi: 10.1016/j.heliyon.2019.e02184. eCollection 2019 Aug.

Abstract

In this study, a micro-encapsulated phase change material (PCM) was composed of sugarcane wax-AlOcomposite as the core material and gelatin-gum Arabic as the polymer shell materials prepared by complex coacervation. The thermal behavior of solar panels integrated with this encapsulated PCM (EPCM) was investigated. The heat storage-dissipation performance and thermal stability of the sugarcane wax-based composite PCM layer with the heat capacity of 2.86 J/g·°C was influenced by its thickness. Increasing the composite PCM layer thickness from 4 mm to 7 mm could lower the module's front-facing glass temperature by 4% resulting in enhanced the photovoltaic power generation by 12% at the peak, because of the temperature storage ability of the composite PCM. Moreover, the thermal conductivity of the microencapsulated sugarcane wax was calculated using a steady-state one-dimensional energy balance equation. The thermal conductivities estimated across the composite PCM layer depth were found to be temperature dependent. A nonlinear regression of the power law thermal conductivity model gave a good agreement with the observed EPCM-surface temperatures.

摘要

在本研究中,一种微胶囊相变材料(PCM)由甘蔗蜡 - 氧化铝复合材料作为芯材,以及通过复凝聚法制备的明胶 - 阿拉伯胶作为聚合物壳材组成。研究了集成这种封装相变材料(EPCM)的太阳能电池板的热行为。基于甘蔗蜡的复合相变材料层的储热 - 散热性能和热稳定性,其热容量为2.86 J/g·°C,受其厚度影响。将复合相变材料层厚度从4毫米增加到7毫米,可使组件正面玻璃温度降低4%,由于复合相变材料的蓄热能力,在峰值时光伏发电增强12%。此外,使用稳态一维能量平衡方程计算了微胶囊化甘蔗蜡的热导率。发现整个复合相变材料层深度估算的热导率与温度有关。幂律热导率模型的非线性回归与观察到的EPCM表面温度吻合良好。

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