In this paper, the heat storage process of a latent heat thermal energy storage (LHTES) tank is studied numerically. A new type of gradient fin is added to the heat storage process in a latent heat storage tank to improve the heat transfer performance of the internal phase change material (PCM). The numerical model is verified by the experimental data. The influences of different structures on the melting rate, temperature distribution, velocity distribution, and maximum melting rate of PCM in LHTES tank are investigated, and the influence of natural convection on the energy storage system is further quantified. The results show that the melting time can be significantly reduced by 16.9% by using the four straight fins with gradient shape, ...
In a numerical investigation of the thermal energy storage performance of a latent heat thermal ener...
A numerical investigation has carried out to understand the melting characteristics of phase change ...
This work investigates melting and solidification processes of four different Phase Change Materials...
A numerical investigation was carried out to evaluate the melting characteristics of phase change ma...
Owing to the intermittent and fluctuating nature of solar energy, thermal energy storage (TES) plays...
The world is facing a major challenge when it comes to proper energy utilization. The increasing ene...
We present numerical investigations on a thermal energy storage system with phase change materials (...
We numerically investigate the phase change melting enhancement in a latent heat thermal energy stor...
The use of a thermal energy storage system with phase change materials (PCMs) is an efficient way of...
The use of a thermal energy storage system with phase change materials (PCMs) is an efficient way of...
Latent thermal energy storage is regarded as an effective strategy to utilize solar energy and recov...
Latent heat thermal energy storage (LHTS) represents an intriguing solution to the problem of variab...
Numerical investigation on latent heat thermal energy storage (LHTES) systems with phase change mate...
We present numerical investigations on a thermal energy stor- age (TES) system using organic phase ...
Thermal energy storages based on the phase change materials are considered as bright technologies be...
In a numerical investigation of the thermal energy storage performance of a latent heat thermal ener...
A numerical investigation has carried out to understand the melting characteristics of phase change ...
This work investigates melting and solidification processes of four different Phase Change Materials...
A numerical investigation was carried out to evaluate the melting characteristics of phase change ma...
Owing to the intermittent and fluctuating nature of solar energy, thermal energy storage (TES) plays...
The world is facing a major challenge when it comes to proper energy utilization. The increasing ene...
We present numerical investigations on a thermal energy storage system with phase change materials (...
We numerically investigate the phase change melting enhancement in a latent heat thermal energy stor...
The use of a thermal energy storage system with phase change materials (PCMs) is an efficient way of...
The use of a thermal energy storage system with phase change materials (PCMs) is an efficient way of...
Latent thermal energy storage is regarded as an effective strategy to utilize solar energy and recov...
Latent heat thermal energy storage (LHTS) represents an intriguing solution to the problem of variab...
Numerical investigation on latent heat thermal energy storage (LHTES) systems with phase change mate...
We present numerical investigations on a thermal energy stor- age (TES) system using organic phase ...
Thermal energy storages based on the phase change materials are considered as bright technologies be...
In a numerical investigation of the thermal energy storage performance of a latent heat thermal ener...
A numerical investigation has carried out to understand the melting characteristics of phase change ...
This work investigates melting and solidification processes of four different Phase Change Materials...