The P61103-104848 Plate & Shell Heat Exchanger combines the advantages of plate heat exchangers and shell-and-tube heat exchangers. Featuring a fully welded process and corrugated plate bundle core structure, it withstands high temperature, high pressure, and variable load conditions across multiple industries, serving as core equipment for heat exchange and energy recovery.
Core Structure and Working Principle
This heat exchanger utilizes a plasma-welded corrugated plate pack as the core heat transfer element, replacing traditional tube bundles. The fully welded process eliminates rubber gaskets, ensuring hermetic isolation. Hot and cold fluids flow countercurrently through independent channels, with corrugated plates enabling high thermal conductivity and turbulence-enhanced heat transfer with minimum temperature difference of 1ºC.
Core Product Advantages
High Temperature and High Pressure Resistance - Designed for harsh working conditions
High Efficiency and Compactness - Superior heat transfer in minimal space
Stable Heat Exchange - Consistent performance under variable load conditions
Safe and Reliable - Long service life with proven durability
Low Pressure Loss - Excellent energy efficiency and operational economy
Application Fields
With excellent heat exchange performance and condition adaptability, this product serves multiple industrial processes including heating, cooling, evaporation, condensation, and waste heat recovery:
Refrigeration Industry - Ammonia refrigeration economizers, evaporators, condensers for CO₂ systems
Chemical Industry - Ammonia water dilution, synthetic ammonia, LNG, DMP cooling heat exchange
Coal Chemical Industry - Phase change processes, temperature/pressure swing adsorption, tar/kerosene cooling
Food and Beverage Industry - Sugar production, beer cooling, beverage low-temperature treatment
The P61103-104848 Plate & Shell Heat Exchanger combines the advantages of plate heat exchangers and shell-and-tube heat exchangers. Featuring a fully welded process and corrugated plate bundle core structure, it withstands high temperature, high pressure, and variable load conditions across multiple industries, serving as core equipment for heat exchange and energy recovery.
Core Structure and Working Principle
This heat exchanger utilizes a plasma-welded corrugated plate pack as the core heat transfer element, replacing traditional tube bundles. The fully welded process eliminates rubber gaskets, ensuring hermetic isolation. Hot and cold fluids flow countercurrently through independent channels, with corrugated plates enabling high thermal conductivity and turbulence-enhanced heat transfer with minimum temperature difference of 1ºC.
Core Product Advantages
High Temperature and High Pressure Resistance - Designed for harsh working conditions
High Efficiency and Compactness - Superior heat transfer in minimal space
Stable Heat Exchange - Consistent performance under variable load conditions
Safe and Reliable - Long service life with proven durability
Low Pressure Loss - Excellent energy efficiency and operational economy
Application Fields
With excellent heat exchange performance and condition adaptability, this product serves multiple industrial processes including heating, cooling, evaporation, condensation, and waste heat recovery:
Refrigeration Industry - Ammonia refrigeration economizers, evaporators, condensers for CO₂ systems
Chemical Industry - Ammonia water dilution, synthetic ammonia, LNG, DMP cooling heat exchange
Coal Chemical Industry - Phase change processes, temperature/pressure swing adsorption, tar/kerosene cooling
Food and Beverage Industry - Sugar production, beer cooling, beverage low-temperature treatment