Siphon Tube Pressure Gauge: 7 Proven Reasons It Is Critical for Every Steam Line

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Steam Service · Pressure Gauge Protection · Piping Accessories · High Temperature

7 Proven Reasons Every Steam Pressure Gauge Needs a Siphon Tube : Plus Critical Installation Rules

A pressure gauge connected directly to a steam line will fail within weeks : possibly dangerously. The siphon tube is the single most important, least expensive and most overlooked protection device in steam instrumentation. This guide explains exactly why it is essential, how it works, the 3 types, material selection and the 7 installation rules every technician must know.

3 Siphon Types 7 Installation Rules Material Selection Guide Do and Don't Checklist

What Is a Siphon Tube and Why Is It Critical for Steam Pressure Gauges?

A siphon tube (also called a siphon pipe or coil siphon) is a small section of coiled or U-shaped tubing installed between a steam line and a pressure gauge. Its sole function is to trap and maintain a column of condensed water between the hot steam and the gauge internals. This water column protects the gauge from three things simultaneously: damaging steam temperature, steam condensate pulsation, and direct steam contact with the Bourdon tube.

A standard Bourdon tube pressure gauge is rated for a maximum process temperature of typically 60 to 80°C at the gauge socket. Steam at even moderate pressures is at temperatures well above this. At 6 bar gauge, steam temperature is 159°C. At 10 bar gauge it is 184°C. Direct connection of a gauge to steam at these temperatures causes the Bourdon tube to anneal (soften and lose its spring characteristics), giving permanently wrong readings before it eventually fails. The siphon tube prevents this by ensuring only cool condensate contacts the gauge.

The siphon is also used in some high-pressure liquid and slurry applications where pulsation protection is needed : but steam service is where it is mandatory without exception. When specifying pressure transmitters for steam service, a remote seal or impulse line fills a similar protective role.

Without a Siphon Tube vs With a Siphon Tube

WITHOUT Siphon Tube

Steam at 160-250°C enters the gauge socket directly. The Bourdon tube metal heats up and anneals within weeks. Zero shifts. Span changes. Gauge reads wrong : but looks fine from the outside. Eventually the Bourdon tube cracks or ruptures, releasing live steam. Gauge lifespan: weeks to months.

  • Bourdon tube anneals from heat
  • Condensate pulsation hammers internals
  • Gauge oil (if liquid filled) breaks down
  • Catastrophic failure risk from steam release
  • Calibration drift from first week of service
WITH Siphon Tube

Steam enters the siphon and condenses in the coil. A column of cool water fills the siphon and the gauge socket. Only water at near-ambient temperature contacts the Bourdon tube. Steam pressure is transmitted accurately through the water column without heat. Gauge lifespan: years of reliable service.

  • Bourdon tube stays at safe temperature
  • Water column cushions pulsation
  • Gauge reads accurately and reliably
  • No steam contact with gauge internals
  • Correct reading from first day of service
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7 Proven Reasons a Siphon Tube Is Essential on Every Steam Pressure Gauge

1
Protects the Bourdon Tube from Thermal Damage

Steam at 6 bar is 159°C. The Bourdon tube alloy (typically phosphor bronze or stainless steel) loses its elastic modulus at elevated temperatures. Once annealed, it cannot recover : the gauge is permanently inaccurate. The siphon's condensate column keeps the gauge socket below 50°C regardless of steam temperature.

2
Prevents Calibration Drift from Day One

A gauge exposed to steam heat drifts in zero and span within the first week. Operators trust the reading without knowing it is wrong. In a steam distribution system where pressure is the primary safety indicator, a drifted gauge is a hidden hazard. The siphon maintains a stable temperature at the gauge, preserving calibration for years.

3
Cushions Steam Condensate Pulsation

Steam systems experience regular pulsation from steam traps, condensate slugs, and valve operation. These pulses travel at the speed of sound in water and hammer the gauge internals at high frequency. The water column in the siphon absorbs these pulsations before they reach the Bourdon tube, eliminating pointer flutter and mechanical fatigue.

4
Protects Liquid-Filled Gauges from Oil Breakdown

Glycerine-filled or silicone-oil-filled gauges are widely used in steam systems to damp pulsation and protect from vibration. Without a siphon, the fill fluid heats up, expands, forces fluid out of the gauge, and eventually degrades. The siphon keeps the fill fluid at safe operating temperature.

5
Eliminates Direct Steam Contact with Gauge Internals

Steam condenses on cold surfaces. In a new installation, the siphon fills with condensate within minutes of steam being admitted. Once filled, it acts as a permanent barrier. No steam molecules ever reach the gauge socket after this initial fill : only the pressure of the steam, transmitted hydrostatically through the cool water column.

6
Required by Most Engineering Standards and Insurance

ASME B40.100 (Pressure Gauges and Gauge Attachments), EN 837 (European gauge standard), and most plant engineering specifications mandate siphon tubes for steam service above 60°C. Plant insurance policies often require documented compliance with these standards. Installation without a siphon may void the gauge manufacturer warranty.

7
Extends Gauge Service Life from Months to Years

A gauge without a siphon on steam service typically lasts 3 to 12 months before calibration is unacceptable. With a correctly installed and filled siphon, the same gauge will give accurate readings for 5 to 10 years. The cost of the siphon (typically $5-$30 USD) is recovered in the very first gauge replacement it prevents.

Always fill the siphon tube with water before admitting steam. If steam enters a dry siphon, it passes straight through to the gauge before condensing. This brief direct steam contact is enough to shift the gauge zero. Fill the siphon with clean water at commissioning before opening the root valve. Critical Commissioning Rule

Steam Temperature vs Pressure: Why the Siphon Temperature Barrier Matters

Saturated Steam Temperature at Different Pressures (Gauge)
0°C 100°C 160°C 200°C 250°C+
100°C
0 bar g
Atmospheric steam
159°C
6 bar g
Typical process steam
184°C
10 bar g
Medium pressure steam
212°C
20 bar g
High pressure steam

Standard pressure gauge Bourdon tube maximum working temperature: 60-80°C. Every steam pressure above 0 bar g exceeds this without a siphon tube.

3 Types of Siphon Tubes: Coil, Pig-Tail and U-Shape

🌀 Coil Siphon (Pigtail Coil)

A full 360-degree coil of tubing, typically with 2-3 turns. The coil design maximises the condensate volume held in the siphon. The large surface area of the coil promotes rapid condensation of incoming steam. Most common type in process plants.

Best for: High-pressure steam, applications with frequent steam flow changes, general process use.

Most common : recommended default choice
🐷 Pig-Tail Siphon

A partial coil or curved tube shaped like a pig's tail. Less condensate volume than a full coil but more compact. Standard in ASME B40.100 and widely used in the USA and Canada. Available in screwed and socket-weld ends.

Best for: Compact installations, low to medium pressure steam, where space is limited around the gauge connection.

Standard in North American specifications
⊓ U-Shape Siphon

A simple U-bend in the impulse line. The bottom of the U traps condensate permanently. Simplest design and least expensive. Used where a coil siphon cannot fit or where the impulse line itself forms the U-bend by routing.

Best for: Low-pressure steam, situations where the impulse line routing provides a natural U-trap, utility steam systems.

Lowest cost : check condensate volume is adequate
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Siphon Tube Material Selection Guide

Material Max Temp Corrosion Resist. Recommended for
Carbon Steel (ASTM A106)
450°C
Moderate
General steam, non-corrosive condensate
316 Stainless Steel
550°C
Excellent
Corrosive steam, chemical plants, coastal environments
304 Stainless Steel
550°C
Good
General steam, food and pharmaceutical plants
Copper (Seamless)
200°C
Good
Low pressure steam only, HVAC, utilities
Monel 400
480°C
Excellent
Chloride-containing steam, seawater-cooled systems
Inconel 625
980°C
Superior
Very high temperature or aggressive steam
Never use copper siphon tubes on steam above 180°C or above 10 bar. Copper anneals and loses strength at these conditions. Carbon steel or stainless steel is the minimum requirement for any medium or high pressure steam system. When in doubt, use 316 stainless : the marginal cost difference over carbon steel is negligible against the risk. Material Selection Rule

7 Installation Rules Every Technician Must Follow

1
Fill before commissioning. Pour clean water into the siphon before opening the root valve. Never admit steam to a dry siphon.
2
Mount the siphon vertically with the gauge connection at the top. This ensures condensate fills the coil by gravity and stays in place.
3
Match the pipe class. Siphon tube pressure and temperature rating must equal or exceed the process line class. Never downgrade.
4
Use the correct connection standard. ASME B16.11 socket weld or screwed fittings for high pressure. NPT or BSP for low pressure gauges per line class.
5
Include a root valve and isolation valve. Always install an isolation valve between the process line and siphon, and a second between siphon and gauge for maintenance without depressurising the line.
6
Never insulate the siphon tube. The siphon relies on heat loss to the atmosphere to condense steam. Insulating it defeats this function entirely.
7
Install a snubber for pulsating steam. On lines with frequent slug flow, condensate hammer or steam traps, add a snubber (orifice restrictor) between siphon and gauge to further damp pressure spikes.

Siphon Tube Installation: Do and Don't

✅ DO
  • Fill siphon with water before commissioning
  • Mount vertically, gauge connection at top
  • Match siphon material to steam conditions
  • Use 316 SS for any corrosive or unknown service
  • Install isolation valves on both sides
  • Install a snubber on pulsating lines
  • Check condensate column during maintenance
  • Use coil siphon as the default choice
❌ DON'T
  • Connect gauge directly to steam without siphon
  • Use copper siphon on steam above 180°C
  • Insulate the siphon tube
  • Admit steam before filling siphon with water
  • Downgrade pipe class on the siphon vs process line
  • Mount the siphon horizontally or inverted
  • Forget to refill after maintenance isolation
  • Use a siphon with a blocked or corroded coil
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Quick FAQs: Siphon Tube for Pressure Gauges

What is a siphon tube and why is it used on pressure gauges in steam service?
A siphon tube is a coiled or U-shaped tube installed between a steam line and a pressure gauge that traps a column of cool condensate water. This water column transmits the steam pressure to the gauge while preventing hot steam from contacting and damaging the Bourdon tube.
Should I fill the siphon tube before commissioning?
Yes : always fill the siphon with clean water before opening the root valve to steam. If steam enters a dry siphon, it reaches the gauge socket before condensing and can permanently shift the gauge zero in that brief exposure.
What material should I use for a steam siphon tube?
316 stainless steel is the safest universal choice for any steam service. Carbon steel suits clean, non-corrosive steam up to 450°C. Avoid copper above 180°C or 10 bar gauge as it anneals and loses pressure-retaining strength.
Can I use the same siphon tube principle for a pressure transmitter?
Yes. A pressure transmitter on steam service uses an impulse line that serves the same condensate-trapping function as a siphon tube. Some applications use a dedicated condensate pot (steam trap chamber) to ensure a reliable condensate column above the transmitter.

External References

What we learn today

  • A siphon tube traps a column of cool condensate between a steam line and a pressure gauge, preventing steam at 100-250°C from contacting the Bourdon tube. The Bourdon tube maximum safe temperature is 60-80°C. Even 0 bar gauge steam at 100°C exceeds this. A siphon tube is therefore mandatory on every steam pressure gauge without exception.
  • Three siphon types: coil siphon (most common, maximum condensate volume, best for high pressure), pig-tail siphon (compact, standard in North American specs), U-shape siphon (simplest, lowest cost, low pressure only). Use 316 stainless steel as the default material. Never use copper above 180°C or 10 bar gauge.
  • Seven installation rules: fill with water before commissioning, mount vertically, match pipe class, use correct connection standard, install isolation valves on both sides, never insulate the siphon, add a snubber on pulsating lines. Never admit steam to a dry siphon : even brief direct steam contact permanently shifts gauge zero.
Siphon Tube Pressure Gauge Steam Steam Instrumentation Pigtail Siphon Bourdon Tube Protection Coil Siphon Steam Service Pressure Gauge Installation ASME B40.100 High Temperature Measurement Condensate Protection Process Instrumentation

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