With 3 decade of wide experience, we are manufacturing, exporting and supplying Air Cooled Heat Exchangers. These exchangers are manufactured according to the global standard by utilizing top-notch quality components and pioneering techniques. Provided exchangers are widely used for cooling purpose in oil and gas industries. अधिकover, our prestigious patrons can buy these Air Cooled Heat Exchangers from us at nominal rates within prescribed delivery time.
Key Points of Air Cooled Heat Exchangers:
- Corrosion resistance
- Sturdy design
- Easy operation
- Durable standard
Superior Performance for Demanding IndustriesDesigned to meet the rigors of oil & gas, power plants, and chemical processes, this air cooled heat exchanger offers robust performance and reliability. The aluminum finned tubes and powerful axial fans enable rapid cooling even in harsh environments while maintaining low noise levels and energy efficiency. Skid-mounted structure facilitates seamless installation in limited spaces.
Engineered for Longevity and EfficiencyEach unit is manufactured with corrosion-resistant materials and finishes, including hot dip galvanization or epoxy painting, ensuring extended lifespan in aggressive operating conditions. The exchangers comply with leading industry standards (ASME / TEMA) and operate at pressures up to 20 bar, safely handling large fluid volumes while maintaining consistent heat transfer efficiency.
Versatile Application and Flexible DesignTailored for both horizontal and vertical configurations, these heat exchangers adapt to a range of installation setups. The user-friendly flanged connections and thoughtful structural design offer quick integration into diverse industrial systems, supporting capacities up to 40 tons/hr. The robust engineering ensures dependable service in refineries, chemical plants, and beyond.
FAQs of Air Cooled Heat Exchangers:
Q: How does the air cooled heat exchanger operate in industrial applications?
A: This heat exchanger uses forced air from axial fans to cool process fluids that flow through finned tubes. The aluminum fins enhance heat transfer efficiency, allowing reliable cooling for processes in oil & gas, power plants, and chemical industries without requiring water.
Q: What benefits does the aluminum finned tube design provide?
A: Aluminum finned tubes offer high thermal conductivity and lightweight design, optimizing heat transfer and reducing overall equipment weight. This construction extends operational lifespan, minimizes maintenance, and resists corrosion, even under harsh chemical or refinery conditions.
Q: When should this air cooled heat exchanger be used over traditional water-cooled designs?
A: Air cooled heat exchangers are ideal when water supply is limited, expensive, or environmental regulations restrict water use. They excel in remote or arid locations typically encountered in oil & gas fields or refineries.
Q: Where can the skid-mounted structure be installed?
A: The skid-mounted configuration enables easy installation on flat, prepared surfaces in outdoor or indoor industrial environments. This flexible mounting suits plant upgrades, temporary operations, or permanent large-scale facilities.
Q: What is the process for maintaining these heat exchangers?
A: Routine maintenance includes periodic cleaning of fins to remove dust or debris, inspection of fan operation, and checking tube integrity. The robust design and protective surface treatment streamline maintenance procedures and help extend system life.
Q: How does this exchanger ensure operator safety and system efficiency?
A: With noise levels below 85 dB(A), compliance with ASME/TEMA codes, and corrosion resistant finishes, the unit is designed for safe and efficient operation. Flanged connections simplify integration, and safety features reduce the risk of leaks and operational disruptions.
Q: What are the primary usage benefits for oil & gas and chemical processing plants?
A: These industries benefit from consistent cooling performance, reduced water consumption, and high thermal efficiency. The exchangers design withstands high temperatures and pressures while supporting high liquid flow rates, optimizing process reliability and productivity.