Liquefied natural gas (LNG) is cooled to -162°C at atmospheric pressure, shrinking its volume by approximately 600 times for efficient transport and storage. However, once leaked, LNG rapidly vaporizes into methane gas (explosive range 5%–15%) and forms visible white vapor clouds in cold environments.
In 2022, an LNG receiving terminal in Australia experienced a motor base weld crack due to low-temperature brittleness on a BOG (Boil-Off Gas) compressor motor. Severe vibration triggered emergency shutdown, requiring two weeks for repair and impacting approximately 150,000 tons of LNG send-out. Root cause: motor structural materials were not specified for impact toughness below -40°C.
Extremely Low Ambient Temperature
Surrounding areas of LNG storage tanks can drop to -50°C
BOG compressor rooms typically operate at -30°C to -20°C in winter
Standard motor steels undergo ductile-to-brittle transition below -40°C
Thermal Shock and Frost Formation
LNG pipe valve leaks can cause local temperatures to plummet from ambient to below -100°C in seconds
Rapid frost accumulation on motor surfaces; frost entering terminal boxes may cause insulation failure
Methane Gas Characteristics
Methane is lighter than air (0.72 kg/m³), accumulating near ceilings and roof corners
LEL of 5% is less stringent than hydrogen but still requires rigorous protection
BOG Handling Dynamics
Natural evaporation from LNG tanks generates BOG with frequent pressure fluctuations (0.1–0.5 barg)
BOG compressor motors must handle frequent start-stop cycles and wide load variations
Cold Shrinkage and Shaft Alignment Stability
Differential thermal contraction between motor shaft and bearing housings can alter bearing clearance
Coupling alignment drifts with temperature changes
Ex db IIB T3 Gb
Parameter |
Meaning |
Significance for LNG |
|---|---|---|
Ex db |
Flameproof enclosure |
Flame path per IEC 60079-1, contains internal explosions |
IIB |
Suitable for methane (ethylene test gas) |
MESG > 0.5 mm, meets methane requirements |
T3 |
Max surface temp 200°C |
Well below methane autoignition temp (537°C) |
Additional low-temp marking: Recommend -50°C ambient or Low Temp -50°C to indicate verified cold-weather performance.
Frame and end shields: Low-temperature steel (e.g., 09MnNiDR or ASTM A352 LCB), impact energy ≥ 27 J at -50°C
Bolts and fasteners: ASTM A320 L7 low-temperature bolts (toughness maintained at -101°C)
Terminal box: Cast aluminum alloy with cryogenic heat treatment to eliminate residual stress
Bearing material: Through-hardened bearing steel (SKF low-temp series or equivalent), hardness maintained at -50°C
Clearance adjustment: Initial clearance enlarged to C4 group to compensate for differential shrinkage between shaft and housing
Grease: Synthetic hydrocarbon low-temperature grease (range -60°C to 120°C), remains fluid at low temperatures
Terminal box heater: Built-in PTC ceramic heating element (30–50 W), maintains internal temperature 5–10°C above dew point
Drain system: Spring-reset freeze-proof drain valve at terminal box bottom; automatically closes below freezing to prevent ice blockage
Cable entry: Double seal + frost-resistant silicone gasket, elasticity maintained at -50°C
Rotor-to-shaft interference: Calculated for -50°C assembly temperature; increased by 10%–15% to prevent loosening at low temperature
Stator core-to-frame fixation: Dual positioning with axial keyway + radial dowel pins to eliminate differential thermal displacement
Coupling alignment: Cold-shrink compensation allowance (axial ±2 mm, radial ±0.5 mm); field-adjusted based on actual temperature
Power cables: Cold-resistant PVC or TPE jacket (no cracking at -50°C), bending radius ≥ 8* cable OD
Seals: Fluorosilicone rubber (FVMQ) or low-temperature nitrile (NBR-LT), compression set ≤ 30% at -50°C
Nameplate attachment: Stainless steel rivets + low-temperature epoxy adhesive for secure retention
Third-party lab simulation of LNG terminal BOG compressor environment (-50°C / 5% methane concentration / cyclic thermal shock [-50°C ↔ +40°C], 1,500-hour continuous operation):
Test Item |
Standard Explosion-Proof Motor |
This Low-Temp Explosion-Proof Motor |
Acceptance Criteria |
|---|---|---|---|
Frame impact toughness (-50°C) |
12 J |
42 J |
≥ 27 J |
Bearing clearance change (ambient → -50°C) |
-0.06 mm |
-0.025 mm |
≤ ±0.03 mm |
Terminal box internal frost |
Visible frost present |
No frost |
No visible frost |
Insulation resistance (post low-temp + condensation) |
32 MΩ |
680 MΩ |
≥ 50 MΩ |
Shaft seal leakage (helium test) |
0.05 mL/min |
Not detected (<0.002 mL/min) |
≤ 0.01 mL/min |
Application |
Recommended Model |
Key Features |
|---|---|---|
BOG compressor (indoor) |
Ex db IIB T3 Gb / -50°C |
Low-temp steel frame, PTC heater, C4 bearing clearance |
LNG submerged pump (tank top) |
Ex db IIB T3 Gb / -50°C + anti-vibration base |
Low-temp seals, cold-shrink compensated coupling |
LNG truck loading/unloading area |
Ex db IIB T3 Gb / -40°C |
Cold-resistant cables, freeze-proof drain valve, quick-ground device |
Contact Person: Mr. Alex Yip
Tel: +86 2386551944