
HDPC
High-Density Phase-Change Energy Storage System
HDPC (High-Density Phase-Change Energy Storage) leverages phase-change materials (PCM) to store and release energy efficiently by utilizing the latent heat during phase transitions, enabling high-density, compact, and efficient energy storage solutions.

Concepts & Features
Efficiently recover waste energy, convert it into cooling and heating sources, and store these sources for low-loss transportation to areas where they are needed.
Factories that generate residual waste heat
Phase-Change Energy Storage Cabinet
Mobile Energy Storage and Supply Vehicle
Phase-Change
Energy Storage
Cabinet
Cooling Spaces
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Energy saving/cost saving principle of cold storage

DAY TIME
When the unit is shut down during the day, cold air flows downward and hot air flows upward. As the air temperature rises, the cold storage module filled with cold energy will release cold energy to the surrounding air. The cold air that has absorbed cold energy will flow downward naturally to provide cold energy for the goods on the shelves.

NIGHT TIME
During the night startup, cold air is blown by the fan through the cooling storage module. This charges the cooling blocks. The air then circulates downward after passing through the wall resistance, cooling the cold storage area.

High-Density
Refers to storing more energy within a limited volume, thereby increasing the energy density of the storage system.

Phase-Change
Involves utilizing the latent heat absorbed or released during the phase transition of materials to store and release energy. For example, when a material transitions from a solid to a liquid, it absorbs a significant amount of heat energy, and when it transitions back from a liquid to a solid, it releases that energy.

Energy Storage
Primarily used for storing energy and releasing it when needed, with applications in grid balancing, renewable energy storage, building heating and cooling, and other scenarios.

High Efficiency
The process of storing and releasing energy using phase-change materials (PCM) is highly efficient, with minimal losses.

Compact Design
High-density energy storage technology is well-suited for applications with limited space.

Wide Applications
It can be used in power storage, building thermal management, cold chain logistics, and other fields.