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What are the typical applications of high- and low-temperature dry coolers?
I. Gas Power Generation Industry (Most Common)
Methane power generation units (coal mine methane, coalbed methane)
Biogas power generation units (food waste, livestock farms, landfill gas)
Natural gas power generation units, shale gas power generation
Biogas / landfill gas power generation
Features:
High-temperature circuit: Cooling engine cylinder jacket water
Low-temperature circuit: Cooling of charge air (intercooler), engine oil, and fuel gas
Must be explosion-proof, corrosion-resistant, and water-saving
II. Steam Power Generation & Combined Heat and Power (CHP)
Small-scale waste heat steam power generation (≤60 MW) closed-loop cooling water systems
Cooling of auxiliary equipment for biomass power generation turbines
Cooling of turbine oil stations and generators in waste-to-energy power plants
Water-saving CHP projects in industrial parks
Features:
Replaces cooling towers to achieve zero evaporative water loss
Separate high- and low-temperature control to meet different temperature requirements for generators, oil stations, shaft seals, etc.
III. Waste Incineration & Hazardous Waste Incineration
High- and low-temperature dry cooling of flue gas (heat recovery + temperature control)
Cooling systems for auxiliary equipment on incineration lines
Flue gas temperature control prior to denitrification, desulfurization, and baghouse filtration
Features:
High-temperature section: Heat-resistant and prevents dioxin formation
Low-temperature section: Prevents acid dew point corrosion and protects filter bags
IV. Oil, Chemical, and Coal Chemical Industries
Cooling for generators using associated gas from oilfields
Cooling of chemical process gases
Oil cooling for compressor stations and water cooling for cylinder liners
Process cooling systems for explosion-proof zones
Features:
High explosion-proof rating
Suitable for flammable and explosive environments, as well as water-scarce desert/Gobi environments
V. Data Centers & Energy Storage
Indirect evaporation + dry-cooling combined cooling for data centers
Dry coolers for liquid cooling systems in energy storage power stations
High/low-temperature dual-loop temperature control for IDCs
Features:
Water-saving, low PUE
High temperature control accuracy
VI. Ships, Drilling Rigs, and Mobile Power Stations
Cooling for marine diesel/gas engine sets
Power generation cooling systems for offshore drilling rigs
Field emergency mobile power stations
Features:
No large quantities of fresh water available
Compact structure, vibration-resistant
VII. High-Altitude, Water-Scarce, and Extremely Cold Regions
Power plants in water-scarce regions
High-altitude power plants (requiring increased heat dissipation area due to thin air)
Anti-freeze cooling systems for extremely cold regions
Features:
Completely eliminates the need for cooling towers, with virtually no water consumption
Can use antifreeze, reducing the risk of freezing and cracking in winter
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