Preparation of Enhanced Thermal Conductive Phase Change
Material and Its Application in Thermal Control of Solar
Cells
Y T He
*
, P F Lu, L X Xiao and Y H Yang
Department of Physics and Electronic Science, Chuxiong Normal University,
Chuxiong 675000, Yunnan Province, China
Corresponding author and e-mail: Y T He, hyt_127@163.com
Abstract. The enhanced conductive lauric acid (LA) phase change material was prepared
with expanded graphite, aluminum powder and carbon fiber as the thermal conductive filler
and its thermal properties were tested and analyzed. The results show that expanded graphite,
aluminum powder and carbon fiber thermal filler in LA phase change material does not
greatly influences LA phase change temperature. The phase change temperature of the LA
phase change material is between 45°C -45.9°C when the mass fraction of thermal conductive
filler is 2%, 5%, 10% and 20% and the LA / EG composite phase change material has a low
"leakage" threshold. The thermal conductivity reached 1.478 W/ m∙K when the EG mass
fraction reached 30%. In addition, thermal control system of solar cells was designed using
LA / EG phase change material as the thermal control material, and the experimental research
on optimal configuration of solar cells and phase change material was carried out. The results
show that phase change material has obvious control effect on solar cell temperature,
reducing the temperature by 7°C .
1. Preface
With the continuous reduction of traditional petrochemical energy reserves and the environmental
pollution caused by the use of petrochemical energy, the development and utilization of clean and
renewable energy sources have become one national strategy in various countries in the world. Solar
energy is widely distributed, pollution-free and hugely reserved, which is the best clean renewable
energy. Moreover, it is extensively studied and applied in solar thermal utilization and photovoltaic
power generation aspects. As we all know, in photovoltaic power generation, only 5-15% solar
energy is converted to electric energy, more than 80% solar energy is absorbed by solar cells and
converted to heat, resulting in solar cell temperature rise. For crystalline silicon solar cells, the
conversion efficiency will drop by 0.45% every time temperature increases by 1°C [1]. Therefore, to
strengthen the temperature control of solar cells is of great significance for improving the output of
photovoltaic power generation system [2-5]. The use of phase change thermal storage technology to
achieve solar cell temperature control has been studied. For example: Hausler et al. designed the PV /
PCM system with integrated PV module and PCM glass box[6]. Hasan et al. designed thermal
management systems using phase change material, by which, solar cell temperature maximally
decreased by 18°C in 30min and decreased by 10°C in 5h under the condition of 1000W/m² [7].
He, Y., Lu, P., Xiao, L. and Yang, Y.
Preparation of Enhanced Thermal Conductive Phase Change Mater ial and Its Application in Thermal Control of Solar Cells.
In Proceedings of the International Workshop on Environmental Management, Science and Engineering (IWEMSE 2018), pages 147-154
ISBN: 978-989-758-344-5
Copyright © 2018 by SCITEPRESS – Science and Technology Publications, Lda. All rights reserved
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