Thermodynamic disc steam trap

Thermodynamic disc steam trap

What is a thermodynamic disc steam trap?

These are traps used in many different petrochemical plants for heating and cooling purposes. Most of these plants have a hydrogen production unit close by, which is why these plant designs have become popular together. The Thermodynamic disc steam trap works by capturing the steam from a recirculating system, condensing the water, and warming up the surrounding air to remove the water vapor. Once the water is removed, any remaining liquid will fall out as waste (or as a valuable product if it’s being piped off). Find out more about how these devices work and where they can be found on our blog.

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Thermodynamic Disc Steam Trap Specification

Thermodynamic Disc Steam Trap Material

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What is a characteristic feature of thermodynamic steam traps?

Thermodynamic disc trap is a high-efficiency, micro-refrigeration device that condenses water vapor out of process streams and turns the waste heat into cooling. They’re designed to run 24/7 at consistent temperatures, so they require less electricity than open-air cooling towers or other methods of air conditioning. The design of a steam trap is also important because it affects its efficiency. A Disc type steam trap with small pores that are only large enough to hold a very small amount of water is more efficient than one with large pores that can hold a large amount of water. The trap size, and the permeability of the materials used to make the trap, are critical to trap efficiency.

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How does a disc type steam trap work?

In a Cast iron steam trap valve, a disc impinges on a liquid stream and causes the liquid to solidify into a solid mass. The disc is made of a material that will not melt when it gets hot from the heat coming from the steam. Then, the disc is placed in a liquid stream, and the heat from the steam causes the disc to melt. The liquid is then pushed through the turbine and then cooled down with condensation. The solid mass of water is then discharged out of the plant. If the disc is made of a strong and heat-resistant material, then it can be reused.

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What is thermodynamic disc trap maximum thermal efficiency?

Thermal disc steam trap has a maximum thermal efficiency of 80%. This means that out of the 20% of the energy that is input into the steam turbine, only 10% is converted into electricity and the other 10% is lost as heat. The thermal dynamic disc can also be made from various materials. The different materials can cause the thermal efficiency to vary from material to material.

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How do I know if my Thermo disc steam trap is working?

If the Thermo disc steam trap is working, then it will be sending out steam that is getting cooled and condensed at the same rate as the incoming water. A block temperature probe is used to check for this condition. If the probe shows that the temperature of the condensate stream is lower than the ambient temperature of the probe, then the trap is not working and needs to be repaired.

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Where should the thermal disc steam trap be installed?

The ideal location for a Td42l bucket steam trap is one that is close to the process that generates the steam. The closer the process is to the steam trap, the more efficient the steam trap will be. In most plant designs, the Liquidator thermo disc steam trap is located close to the hydrogen production unit, as hydrogen is a major product byproduct of steam.