A Trustworthy Brand Name for Engineering Goods in India

A Trustworthy Brand Name for Engineering Goods in India

Indirect Fired Hot Air Generator

PRODUCT DESCRIPTION

Indirect Fired Hot Air Generator

An Indirect Fired Hot Air Generator operates on a different principle compared to its Direct Fired counterpart. Instead of directly heating the air with combustion gases, it utilizes an intermediary fluid, typically thermal oil or water, to transfer heat to the air indirectly. 

This process ensures that the hot air remains free from contaminants and combustion by-products.

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We render our maximum efforts to fulfil customer requirement in achieving best quality with best competitive price.

We offer the complete range of Indirect fired hot air generators. The Indirect fired air heater is designed for heating the drying air. The air heater is designed with special attention to high thermal efficiency & Low-pressure drop. The air heater consists of an annular shell and the heating of the air takes place counter current to the flow of flue gases. Our indirect fired hot air generators operate up to 325 Deg C.

Indirect Fired Hot Air Generator Features :

Indirect Fired Hot Air Generators offer several advantages that make them an ideal choice for various industrial processes:

  • Clean and Contaminant-Free Air
  • Precise Temperature Control
  • Improved Air Quality
  • Reduced Maintenance

Indirect Fired Hot Air Generator Application :

The versatility of Indirect Fired Hot Air Generators makes them indispensable in various industries:

  • Food and Beverage Industry
  • Pharmaceuticals
  • Chemical Processing
  • Wood and Paper Industry

Working Principle :

The working principle of an Indirect Fired Hot Air Generator involves the combustion of fuel in a separate combustion chamber. The heat produced from this combustion process is transferred to the intermediary fluid circulating in a closed loop system. The heated fluid, in turn, flows through a heat exchanger where it releases its thermal energy to the clean air passing through another set of tubes. As a result, the air becomes hot and is then directed to the desired application.