Thermowells and Non-Contact Temperature — Thermowells, IR Thermometers, Pyrometers

A thermowell is a closed-end tube inserted permanently into a process pipe or vessel, into which a temperature sensor (thermocouple or RTD) is inserted — the thermowell isolates the sensor from the process fluid, allows sensor removal without process shutdown, and provides mechanical protection from flow and pressure. Non-contact temperature sensors measure emitted infrared (IR) radiation from the target surface without physical contact — IR thermometers cover −50 to +3,500°C on moving, inaccessible, or molten targets; two-colour pyrometers extend range to +4,000°C for furnace and metalworking applications.

Challenges

Thermowell Resonance (Strouhal Vortex Shedding) Causing Thermowell Fatigue Fracture

High-velocity flow past the thermowell creates vortex shedding at a frequency that may match thermowell natural frequency — resonance fractures the well.

Thermowell Lag Error from Thermal Resistance Between Well Wall and Sensor

Air gap between sensor tip and well bore retards heat conduction — temperature response time is 30–120 seconds; step changes missed.

IR Thermometer Emissivity Error on Shiny Metal Surfaces (ε = 0.05–0.30)

Polished metal reflects ambient radiation as well as emitting its own — apparent temperature reads much lower than true surface temperature.

IR Measurement Error from Airborne Dust, Steam, or CO₂ Absorbing IR Signal

Particulate dust, water vapour, and CO₂ absorb infrared in certain wavelength bands — attenuated signal reads lower temperature.

Thermowell Insertion Length Too Short (Minimum 10× Bore Diameter Rule)

Short insertion leaves sensor tip in conductive boundary layer near vessel wall — reads ambient wall temperature, not process temperature.

Solutions

Applications

Models & Capacities

Thermowells and Non-Contact Temperature — Models & Reference

Type

Shank Form

Process Connection

Insertion Length [mm]

Max Velocity [m/s (liq / gas)]

Max Pressure [bar]

Max Temp [°C]

Material Options

Wake Freq. Analysis Required

Response Time (approximate)

Thermowell — straight shank

Straight (uniform Ø)

Threaded NPT/BSP; flanged

50–1,500

<3 m/s liq; <30 m/s gas

300

500

SS 316L; Hastelloy; Inconel; Monel

>1 m/s — ASME PTC 19.3 TW required

30–90 s (depends on annular gap)

Thermowell — tapered shank

Tapered (small tip)

Threaded NPT/BSP; flanged

50–600

<10 m/s liq; <80 m/s gas

200

500

SS 316L; Hastelloy; Duplex

Preferred for high velocity — better vibration resistance

20–60 s

Thermowell — stepped shank

Stepped (large root, small tip)

Flanged PN16–PN150

100–1,500

<12 m/s liq; <100 m/s gas

400

600

SS 316L; Alloy 625; Inconel 625

Yes for all high-velocity applications

15–45 s

Thermowell — Van Stone

Lap joint flange

Lap joint flange (removable)

150–600

<8 m/s liq

100

300

SS 316L; SS 304

For lower velocity; removable without breaking flange

30–80 s

Thermowell — sanitary

Straight (thin wall, Ra <0.8 µm)

Tri-Clamp; DIN 11851

50–300

<3 m/s liq

16

200

SS 316L; Ra <0.8 µm

Low velocity — not normally required

10–40 s (short insertion)

IR thermometer (handheld)

Non-contact (portable)

N/A

N/A

N/A

N/A

−50 to +2,500

Housing plastic/aluminium

N/A

<1 s (instantaneous)

IR thermometer (fixed mount)

Non-contact (fixed)

Mounting bracket

N/A

N/A

N/A

−50 to +3,500

SS housing; water-cooled option

N/A

<1 s; 4–20 mA output + relay

Two-colour pyrometer (ratio)

Non-contact (optical)

Sight pipe or window

N/A

N/A

N/A

+500 to +4,000

Fibre optic + electronics

N/A

< 10 ms; 4–20 mA output

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