Brand Name: York
Model Number: YHAU-C
Place of Origin: china wuxi
These units are ideally suited for lower steam pressures found in commercial cooling and industrial process applications.
The YORK® YHAU-C Single-effect, Steam Absorption Chiller offers a broad range of capacities from 30 to 2,000 TR. This unit uses an innovative, two-step evaporator and absorber cycle that is more efficient and more reliable than conventional designs. The flexibility combined with a wide operating envelope is optimally suited for commercial cooling and industrial process applications. Our world-class engineering and service organization helps simplify startup and chiller operation over the life of the system.
OPTIMAL EFFICIENCY
The YORK® YHAU-C Singe-effect, Steam Absorption Chiller uses an innovative, two-step evaporator and absorber design for enhanced efficiency.
FLEXIBLE DESIGN
This unit is suited for a variety of steam pressures found in CHP systems, commercial cooling and industrial process applications.
LOWER COST OF OWNERSHIP
Our world-class engineering and service teams reduce the cost of ownership by simplifying the operating cycle and deliver worry-free peace of mind.
YORK® YHAU-C Single-effect, Steam Absorption Chillers are uniquely designed with a two-step evaporator that has two pressure levels to divide the absorption process. The chilled water flows in tubes through the two evaporators while a concentrated lithium bromide solution is distilled in the absorber shell-side in the opposite direction. This reduces the solution concentration and overall pressure, making the unit more efficient and reliable than conventional absorption chillers.
SEE HOW IT WORKSThe falling-film generator design provides superior heat transfer compared to a conventional, flooded generator. This design also reduces the required amount of lithium-bromide solution to be circulated, decreasing start-up time from a cold start. Stainless steel tubes are adopted to prevent stress corrosion cracking and intermediate tube supports reinforce and extend unit life.