This study investigates the inward solidification problem of a phase change material (PCM) encapsulated in a cylindrical/spherical container with a third kind of boundary condition. The governing dimensionless equations of the problem and boundary conditions are formulated and solved numerically by using enthalpy method with control volume approach. The problem is solved many times for different values of the affecting parameters and data sets are obtained for dimensionless total solidification time of the PCM. These data sets are then used to derive correlations which express the dimensionless total solidification time of the PCM in terms of Stefan Number, Biot Number and Superheat Parameter
Phase change material (PCM) based Thermal Energy Storage (TES) system is a proven technology to stor...
AbstractPhase Change Material (PCM) based thermal energy storage plays a great role in the era of en...
In this study, a theoretical approach is proposed for the prediction of time and temperature during ...
Thesis (Master)--Izmir Institute of Technology, Mechanical Engineering, Izmir, 2003Includes bibliogr...
The objective of this work is to investigate the parameters affecting the time for complete solidif...
AbstractIn this study, a numerical analysis of the inward solidification of phase change material in...
AbstractIn this investigation the coupled phase change and heat transfer in a spherical capsule part...
To date, numerous phase change materials (PCM) have been developed for application in latent heat st...
AbstractLatent Heat Storage is used to balance temporary temperature alternations and storage of ene...
Phase change materials (PCM) present great potential for energy efficiency gains in thermal systems ...
WOS: 000454548400008In this study, a numerical analysis of the inward solidification of phase change...
We present in this work simulations using the finite difference approximation in 2D for the melting ...
The study of liquid-solid phase change has value in a range of applications, including in nuclear po...
Phase change material (PCM) based Thermal Energy Storage (TES) system is a proven technology to stor...
In this work, inward solidification process of a spherical capsule subjected to a periodic boundary ...
Phase change material (PCM) based Thermal Energy Storage (TES) system is a proven technology to stor...
AbstractPhase Change Material (PCM) based thermal energy storage plays a great role in the era of en...
In this study, a theoretical approach is proposed for the prediction of time and temperature during ...
Thesis (Master)--Izmir Institute of Technology, Mechanical Engineering, Izmir, 2003Includes bibliogr...
The objective of this work is to investigate the parameters affecting the time for complete solidif...
AbstractIn this study, a numerical analysis of the inward solidification of phase change material in...
AbstractIn this investigation the coupled phase change and heat transfer in a spherical capsule part...
To date, numerous phase change materials (PCM) have been developed for application in latent heat st...
AbstractLatent Heat Storage is used to balance temporary temperature alternations and storage of ene...
Phase change materials (PCM) present great potential for energy efficiency gains in thermal systems ...
WOS: 000454548400008In this study, a numerical analysis of the inward solidification of phase change...
We present in this work simulations using the finite difference approximation in 2D for the melting ...
The study of liquid-solid phase change has value in a range of applications, including in nuclear po...
Phase change material (PCM) based Thermal Energy Storage (TES) system is a proven technology to stor...
In this work, inward solidification process of a spherical capsule subjected to a periodic boundary ...
Phase change material (PCM) based Thermal Energy Storage (TES) system is a proven technology to stor...
AbstractPhase Change Material (PCM) based thermal energy storage plays a great role in the era of en...
In this study, a theoretical approach is proposed for the prediction of time and temperature during ...