Effect of Microstructure on Thermal Properties of EG/MA Shaped Composite Phase Change Materials
暂无分享,去创建一个
M. Di | Yan Li | W. Tan | Sheng-hui Zhou | Qun-zhi Zhu | Qunzhi Zhu
[1] Y. Li,et al. Effect of EG particle size on the thermal properties of NaNO3–NaCl/EG shaped composite phase change materials , 2022, Energy.
[2] Pushpendra Kumar Singh Rathore,et al. Improvement in thermal properties of PCM/Expanded vermiculite/expanded graphite shape stabilized composite PCM for building energy applications , 2021 .
[3] Q. Z. Zhu,et al. A Study of LiNO3–NaCl/EG Composite PCM for Latent Heat Storage , 2021, International Journal of Thermophysics.
[4] Yanping Yuan,et al. Investigations on transient thermal performance of phase change materials embedded in metal foams for latent heat thermal energy storage , 2021, International Journal of Energy Research.
[5] Beom Yeol Yun,et al. A comparative analysis of biochar, activated carbon, expanded graphite, and multi-walled carbon nanotubes with respect to PCM loading and energy-storage capacities. , 2021, Environmental research.
[6] M. Karkri,et al. Preparation and effective thermal conductivity of a Paraffin/ Metal Foam composite , 2020 .
[7] H. Fei,et al. The Phase Change Characteristics of Capric Acid-based Binary Low Eutectic Mixtures Adsorbed in Expanded Graphite , 2020 .
[8] Pan Weiguo,et al. Corrigendum to: “Thermal conductivity enhancement on phase change materials for thermal energy storage: A review” , 2020 .
[9] Xin Wang,et al. Effects of graphite microstructure evolution on the anisotropic thermal conductivity of expanded graphite/paraffin phase change materials and their thermal energy storage performance , 2020 .
[10] Zhengguo Zhang,et al. Improving the heat storage/release rate and photo-thermal conversion performance of an organic PCM/expanded graphite composite block , 2019, Solar Energy Materials and Solar Cells.
[11] Balamurugan A. Gurunathan,et al. Nano-enhanced phase change materials: A review of thermo-physical properties, applications and challenges , 2019, Journal of Energy Storage.
[12] Ioan Sarbu,et al. Review on heat transfer analysis in thermal energy storage using latent heat storage systems and phase change materials , 2018, International Journal of Energy Research.
[13] Zhengguo Zhang,et al. Modification of expanded graphite and its adsorption for hydrated salt to prepare composite PCMs , 2018 .
[14] Ming-Jia Li,et al. Melting performance enhancement of phase change material by a limited amount of metal foam: Configurational optimization and economic assessment , 2018 .
[15] Ruzhu Wang,et al. Preparation and thermal performance of form-stable expanded graphite/stearic acid composite phase change materials with high thermal conductivity , 2017 .
[16] A. Sharma,et al. Advancement in phase change materials for thermal energy storage applications , 2017 .
[17] Qilin Guo,et al. Preparation and thermal properties of short carbon fibers/erythritol phase change materials , 2017 .
[18] Zhengguo Zhang,et al. Preparation and thermal energy storage properties of d-Mannitol/expanded graphite composite phase change material , 2016 .
[19] Ming Li,et al. Thermal characterization of nitrates and nitrates/expanded graphite mixture phase change materials for solar energy storage , 2013 .
[20] J. Selman,et al. Thermal conductivity enhancement of phase change materials using a graphite matrix , 2006 .
[21] Hang Yu,et al. A n-octadecane/hierarchically porous TiO2 form-stable PCM for thermal energy storage , 2020 .
[22] S. S. Chandel,et al. Review of current state of research on energy storage, toxicity, health hazards and commercialization of phase changing materials , 2017 .