THERMAL OIL HEATER-PT INDIRA DWI MITRA

THERMAL OIL HEATER-PT INDIRA DWI MITRA

THERMAL OIL HEATER-PT INDIRA DWI MITRA


Thermal Oil Heater - Made In Indonesia Specialist Fabrikator Steam Boiler, Thermal Oil Heater.Thermal Oil Heater Working Principle. The reason why thermal oil heating becomes more and more used is mainly related to these features and arguments:

  • - High temperatures up to above 350°C
  • - at atmospheric pressure
  • - Choice-free set-points of the outgoing thermal
  • fluid temperature
  • - Supreme part-load operations without compromising
  • heating quality
  • - No equipment for pre-treatment, no chemicals, no
  • additives, etc.
  • - No heat loss due to hot condensate and flash steam
  • - No risk of corrosion in the boilers, or the piping
  • of the circuit
  • - Both cooling below 0°C and above 100°C using
  • low-temperature fluid
  • - Low maintenance costs (no dynamic influences
  • causing leakages)
  • - Quiet in operation (no steam stroke and flash steam
  • noise)
  • - Easy to operate (does not require boiler-certified staff
  • etc.)
  • - Fluid sample analysis that determines the condition
  • of the system
  • - No risk of freezing damage in cold regions.


Thermal oil or thermal fluid is used to carry energy in heating applications, industrial processing, and also cooling industrial machines. Thermal oils are best suited for use in high-temperature applications where the optimal operating conditions are between 150oC to 350oC. At this temperature, heating using Thermal oil / thermal fluid will have the highest efficiency when compared to other heating methods such as using steam (steam), electricity, or direct fired.?

The fluid used for the heat transfer medium is generally referred to as a thermal fluid. Water is the most readily available thermal fluid with a fairly high heat transfer efficiency and is easy to control, but its weakness is that it is limited in its physical properties, namely, it will boil and change phase to vapor at temperatures above 100 C. This results in the operation of water at temperatures above 100 C requiring a pressurized system.?

DESIGN

Piping in Thermal Oil Systems

(1) Thermal fluid Heater,

(2) Thermal fluid Circulating Pump,

(3) Safety Relief Valve,

(4) Thermometer,

(5) Pressure Gauge,

(6) Thermal fluid Heated Equipment,

(7) Bypass Valve to maintain full flow to heater,

(8) Expansion Joints

(9) Anchor and Pipe Guides,

(10) Expansion tank,

(11) Vent Piping,

(12) De-aerator Tank,

(13) De-aerator Tank inlet,

(14) Thermal Buffer Tank,

(15) Catch Tank for the drain of the pressure relief

valve, cold seal, expansion tank & vent,

(16) Gate Valve,

(17) Strainer,

(18) System Fill Connection,

(19) Flexible Connection,

(20) Isolating Valve,

(21) Manual Low-Level Test Line,

(22) Manual High-Level Test Line.

The thermal oil system provides an efficient heat source for processes requiring high temperatures, even up to 400 C. Operationally the use of a thermal oil system will be cheaper and will usually require less maintenance than a steam system. In addition, thermal oil will be more thermally efficient and does not release heat into the atmosphere through traps and leaks like steam/steam systems. However, although thermal oil systems are an overall better choice than steam systems for high-temperature applications, thermal system users' oil is still not as much as the steam system. Past incidents due to imperfect thermal oil design and improper fluid selection have led to a number of incidents that have left a negative view of the use of thermal fluids.

THERMAL OIL HEATER APPLICATION

The following are some examples of the use of Thermal

oil in various industries:

? Chemical industry

? Plastic & rubber processing

? Textile and Laundry

? Food processing

? Oil and Gas Production

? Wood processing

? Plastic & rubber

processing ? Paper, cardboard and derivatives

processing

? Industry Shipping

? Building Materials

? Metal processing

THE BENEFITS OF THERMAL OIL HEATER

The advantage of thermal oil is that it has a higher boiling point, which is around 300-400 C depending on the type of thermal oil. As long as the operational conditions are below the vapor point there will be no phase change in the thermal oil. Therefore, the thermal oil system can work at low pressure to produce the desired high temperature. Thermal oil also has the advantage of being able to be used at several temperature levels at once. One unit of thermal oil heater can provide heat requirements in several temperature circuits/loops at once. For example, a Thermal oil heater with an operating temperature of 300'C can be used for other thermal oil circuits with 3 operating temperatures: 300'C, 240'C, 150'C with each temperature having its own circuit.

Contact us

PT Indira Dwi Mitra

Ratman Bejo

???081388666204??

My Website

https://indira.co.id

https://idmboiler.co.id

https://hargaboiler.co.id

https://boilermarine.co.id

https://winsketelboilers.com

Email: [email protected]

Email: [email protected]

https://youtube.com/c/RatmanBejo

#Thermal_Oil_Heaters

#HTO_Boiler_Indonesia

#TOH_Boilers-Made_In_Indonesia

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