典型文献
                Thermal energy storage inside the chamber with a brick wall using the phase change process of paraffinic materials: A numerical simulation
            文献摘要:
                    Phase change materials are one of the potential resources to replace fossil fuels in regards of supplying the energy of buildings. Basically, these materials absorb or release heat energy with the help of their latent heat. Phase change materials have low thermal conductivity and this makes it possible to use the physical properties of these materials in the tropical regions where the solar radiation is more direct and concentrated over a smaller area. In this theoretical work, an attempt has been made to study the melting process of these materials by applying constant heat flux and temperature. It was found that by increasing the thickness of phase change materials' layers, due to the melting, more thermal energy is stored. Simultaneously it reduces the penetration of excessive heat into the chamber, so that by increasing the thickness of paraffin materials up to 20 mm, the rate of temperature reduction reaches more than 18%. It was also recognized that increasing the values of constant input heat flux increases buoyancy effects. Increasing the Stefan number from 0.1 to 0.3, increases the temperature by 6%.
                文献关键词:
                    
                中图分类号:
                    作者姓名:
                    
                        M.Javidan;M.Asgari;M.Gholinia;M.Nozari;A.Asgari;D.D.Ganji
                    
                作者机构:
                    Department of Mechanical Engineering,Babol Noshirvani University of Technology,Babol,Iran;Department of Chemistry,Drexel University,Philadelphia,USA;Department of Mechanical Engineering,Shiraz University,Shiraz,Iran
                文献出处:
                    
                引用格式:
                    
                        [1]M.Javidan;M.Asgari;M.Gholinia;M.Nozari;A.Asgari;D.D.Ganji-.Thermal energy storage inside the chamber with a brick wall using the phase change process of paraffinic materials: A numerical simulation)[J].力学快报(英文),2022(03):197-206
                    
                A类:
                paraffinic
                B类:
                    Thermal,energy,storage,inside,chamber,brick,wall,using,phase,change,process,materials,numerical,simulation,Phase,one,potential,resources,replace,fossil,fuels,regards,supplying,buildings,Basically,these,absorb,release,heat,help,their,latent,have,low,thermal,conductivity,this,makes,possible,use,physical,properties,tropical,regions,where,solar,radiation,more,direct,concentrated,over,smaller,area,theoretical,work,attempt,been,made,study,melting,by,applying,constant,flux,temperature,It,was,found,that,increasing,thickness,layers,due,stored,Simultaneously,reduces,penetration,excessive,into,reduction,reaches,than,also,recognized,values,input,increases,buoyancy,effects,Increasing,Stefan,number,from
                AB值:
                    0.57113
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