Guiyin Fang
- Experimental study on cool storage air-conditioning system with spherical capsules packed bed. In: Energy and Buildings, v. 42, n. 7 (Juli 2010). (2010):
- Preparation and characteristics of n-nonadecane/cement composites as thermal energy storage materials in buildings. In: Energy and Buildings, v. 42, n. 10 (Oktober 2010). (2010):
- Dynamic performances of solar heat storage system with packed bed using myristic acid as phase change material. In: Energy and Buildings, v. 43, n. 5 (Mai 2011). (2011):
- Preparation and thermal properties of n-octadecane/molecular sieve composites as form-stable thermal energy storage materials for buildings. In: Energy and Buildings, v. 49 (Juni 2012). (2012):
- Preparation and characteristics of microencapsulated stearic acid as composite thermal energy storage material in buildings. In: Energy and Buildings, v. 62 (Juli 2013). (2013):
- Dynamic performances modeling of a photovoltaic–thermal collector with water heating in buildings. In: Energy and Buildings, v. 66 (November 2013). (2013):
- Synthesis and characterization of microencapsulated paraffin with titanium dioxide shell as shape-stabilized thermal energy storage materials in buildings. In: Energy and Buildings, v. 72 (April 2014). (2014):
- Dynamic characteristics modeling of a hybrid photovoltaic–thermal solar collector with active cooling in buildings. In: Energy and Buildings, v. 78 (August 2014). (2014):
- Preparation and thermal properties of stearic acid/titanium dioxide composites as shape-stabilized phase change materials for building thermal energy storage. In: Energy and Buildings, v. 80 (September 2014). (2014):
- Preparation and characteristics of composite phase change material (CPCM) with SiO 2 and diatomite as endothermal-hydroscopic material. In: Energy and Buildings, v. 86 (Januar 2015). (2015):
- Thermal properties and morphologies of MA–SA eutectics/CNTs as composite PCMs in thermal energy storage. In: Energy and Buildings, v. 127 (September 2016). (2016):
- Preparation and thermal properties of n–octadecane/stearic acid eutectic mixtures with hexagonal boron nitride as phase change materials for thermal energy storage. In: Energy and Buildings, v. 131 (November 2016). (2016):
- Dynamic thermal characteristics analysis of microencapsulated phase change suspensions flowing through rectangular mini-channels for thermal energy storage. In: Energy and Buildings, v. 134 (Januar 2017). (2017):
- Synthesis, characterization and applications of microencapsulated phase change materials in thermal energy storage: A review. In: Energy and Buildings, v. 144 (Juni 2017). (2017):
- Maximizing the energy output of a photovoltaic–thermal solar collector incorporating phase change materials. In: Energy and Buildings, v. 153 (Oktober 2017). (2017):
- Improved thermal properties of stearyl alcohol/high density polyethylene/expanded graphite composite phase change materials for building thermal energy storage. In: Energy and Buildings, v. 153 (Oktober 2017). (2017):