Jiangsu Ruiyuan Heating Equipment Technology Co.

Organic heat carrier furnace (thermal oil boiler) structure introduction

Organic heat carrier furnace, also known as thermal oil boiler, is a kind of boiler equipment that uses thermal oil for heating. Different from the traditional water vapour boiler, the organic heat carrier furnace transfers heat to the heat-using equipment by means of highly efficient thermal oil circulation, which has higher temperature control precision and lower operating pressure, and is widely used in various industrial fields.
Organic heat carrier furnace heat transfer oil boiler structure introduction

The working principle of organic heat carrier furnace

The working principle of the organic heat carrier furnace is mainly through the combustion of coal, oil, gas and other fuels, the heat produced is transferred to the heat conduction oil. Heat conduction oil as a carrier of heat energy, in the boiler through the oil pump forced circulation, the heat away and transfer to the equipment that needs to be heated. The biggest advantage of using heat transfer oil as a medium is that it can achieve high temperature heating under low pressure, avoiding the safety hazards associated with the high-pressure operation of water vapour boilers.

Organic heat carrier furnace main structure composition

  1. furnace
    The furnace chamber is the core of an organic heat carrier furnace, responsible for burning the fuel and transferring the heat generated by combustion to the heat transfer oil. Typically, the furnace chamber is equipped with a high-efficiency burner to ensure full combustion of the fuel and maximise thermal efficiency.
  2. furnace guts
    Furnace liner is the heat exchange part of the furnace chamber and boiler system, which carries the heating effect of high temperature heat transfer oil. The furnace liner and the furnace chamber together constitute the heating surface of the boiler, which can effectively transfer the heat generated by combustion to the heat transfer oil.
  3. flue
    The flue is responsible for discharging the exhaust gases from the combustion process and continues to dissipate heat. Through the flue, the waste heat is utilised efficiently, while the flue gases are vented to the outside, reducing wasted heat.
  4. control system
    The control system is an important part of ensuring the safe and efficient operation of the boiler. It can monitor the temperature, combustion status and pump system operation in real time, and automatically adjust the parameters to ensure that the boiler is in the best working condition.
  5. pumping system
    The pump system is responsible for transferring the heat transfer oil through the pipeline to the equipment to be heated and circulating it back to the boiler for heating. The flow of heat transfer oil is forced through the pump system, thus ensuring efficient heat transfer.
  6. Safety valves and add-ons
    In order to ensure the safety of boilers, they are usually equipped with accessories such as safety valves, pressure gauges and water level gauges. These components can monitor the pressure, temperature and water level of the boiler in real time, preventing over-temperature or over-pressure situations and guaranteeing the safe operation of the equipment.

Advantages of Organic Heat Carrier Furnaces

  • High temperature and low pressure operation: Organic Heat Carrier Furnaces achieve higher temperatures at lower pressures and are suitable for industrial applications requiring stable high temperatures.
  • effectivityHeat transfer oil, as a heat carrier, has good heat transfer properties and can quickly and evenly transfer heat energy to each heating device.
  • Flexible applications: Widely used in the production process of petroleum, chemical, plastics, food and other industries, especially in the temperature requirements of high and low pressure requirements of the occasion.

Organic heat carrier furnace (thermal oil boiler), as an efficient and reliable heating equipment, plays an important role in many industries by virtue of its unique working principle and structural design. It is not only able to provide high temperature heat energy, but also able to operate safely and stably under low pressure, and is an indispensable equipment in many industrial production processes.

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