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Steam Engineering
Thermodynamic Steam Trap
Thermodynamic traps work on the difference in dynamic response to velocity change in the flow of compressible and in-compressible fluids. As steam enters, static pressure above the disk forces the disk against the valve seat. The static pressure over a large area overcomes the high inlet pressure of the steam. As the steam starts to condense, the pressure against the disk lessens and the trap cycles. This essentially makes a TD trap a “time cycle” device.
• Uniquely designed with maintainable seat.
• Corrosion resistant stainless steel construction.
• Differential hardness value for seat and Disc.
• Oxidation free heat treatment (vacuum) for seat and disc.
• Functional test- 100% on Steam.
Sizes | 15 NB and 20 NB |
MOC | ASTM A 217 Gr. WC 6 |
End Connection | Screwed – BSP/ BSPT/ NPT, Socket weld, |
Flanged | ASA 150, ASA 300, ASA 600 (welded on) |
Max. Allowable Pressure(PMA) | 65 Bar(g) |
Max Allowable Temperature(TMA) | 510℃ |
Minimum inlet pressure required | 8 Bar (g) |
Back Pressure | should not exceed 80% of the inlet pressure |
Cold hydraulic test pressure | 150Bbar(g) |
Certification | IBR Approval / En10204-3.1 |
• It is an internment discharge type of trap, which works on velocity difference.
• It is mainly used in main steam line for drain application.
• Thermodynamic traps can operate across their entire working range without any adjustment or change of internals.
• They are compact, simple, lightweight and have a large condensate capacity for their size.
• As the disc is the only moving part, maintenance can easily be carried out without removing the trap from the line.
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