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Tunnel & Underground Ventilation | YONGFAN
Longitudinal & Ductless Underground Ventilation · SDS & SDS(R) Jet Fans · 191–3,046 N Thrust · PYHL 280 °C / 30 min

Tunnel & Underground Ventilation: Aerodynamic Thrust, Reversibility & Smoke Control

Tunnel and underground ventilation is selected from airflow direction, installed thrust, smoke strategy, pressure loss and acoustic limits—not from a fan’s maximum airflow alone.

Design tunnel and enclosed parking ventilation with YONGFAN SDS unidirectional jet fans (191–3,046 N thrust, Ø630–1600mm), SDS(R) 30-second reversible jet fans, PYHL-14A ductless jet-induction exhaust (280 °C / 30 min fire duty), HL3-2A ducted mixed-flow fans, DTF in-line axial fans (115–2,266 Pa), and 1D/2D silencers.

SDS Jet Thrust 191–3,046 N · Ø630–Ø1600 mm
SDS(R) Reversal ≤30 Seconds Switchover
PYHL-14A Induction 280 °C / 30 min Fire Rated
1D / 2D Silencers 9–14 dB(A) Noise Reduction
Highway vehicular tunnel ceiling showing longitudinal SDS jet fans with matched silencers
Tunnel & Underground Ventilation SDS Unidirectional · SDS(R) Reversible · PYHL-14A Jet-Induction · HL3-2A Ducted · DTF In-Duct Axial
01 / Aerodynamic Momentum Analysis

Underground Ventilation Fails When Fan Duty Is Separated From the Space

A tunnel jet fan produces rated catalog thrust on a test rig, but in-situ tunnel air velocity, ceiling clearance, wall friction, and grouping losses reduce useful installed thrust.
Underground parking garage ventilation showing ductless jet-induction fans sweeping air toward exhaust shafts
Installed Effective Thrust Calculation

Ne = Ns × (1 − Vt / Vj) × C2 × C3

Ns = static thrust; Vt = tunnel air velocity; Vj = fan exit jet velocity; C2 = friction coefficient; C3 = installation/grouping loss factor.

Ignoring Moving Air Velocity Losses

Calculating fan count purely as (Total Thrust / Catalog Thrust) without correcting for tunnel velocity drops installed thrust by 20–40%.

Impact: Under-ventilated tunnels & inability to control smoke

Overlooking Reversible Thrust Penalty

Selecting reversible SDS(R) fans with symmetric blades without accounting for the 4–6% lower thrust compared to unidirectional SDS.

Impact: Shortfall in forward longitudinal thrust

Portal Acoustic Complaints & Silencer Surprises

Adding 1D/2D silencers after fan procurement changes assembly length, weight, support structures, and tunnel clearance.

Impact: Installation interference & expensive structural retrofits

Ductless Induction vs Ducted Exhaust Confusion

Applying ducted mixed-flow calculations to ductless car park layouts, or omitting extract shafts for PYHL induction fans.

Impact: Stagnant pollutant pockets in dead zones of car parks

The Four Underground Ventilation Architectures

Longitudinal jet thrust, rapid reversal, ductless car-park induction, and ducted station exhaust.

01 / Longitudinal Thrust SDS unidirectional jet fans delivering 191–3,046 N momentum transfer
02 / Emergency Reversal SDS(R) bidirectional fans reversing airflow within 30 seconds upon fire signal
03 / Ductless Car Parks PYHL-14A mixed-flow induction fans driving air toward shafts without ductwork
04 / In-Duct Stations HL3-2A mixed-flow and DTF axial fans overcoming high shaft static pressure
02 / Portfolio Showcase

Tunnel & Underground Product Families

Detailed engineering review of YONGFAN’s tunnel jet fans, reversible fans, induction units, and station exhaust fans.
01 · SDS Jet Fans Unidirectional Jet Thrust · 191–3,046 N

SDS Tunnel Jet Fan

Longitudinal jet ventilation for road and rail tunnels (191–3,046 N static thrust, 7.9–71.8 m³/s airflow, 16–45.5 m/s exit velocity, Ø630–Ø1600 mm diameter, 4–90 kW motors). Features adjustable blade angles (18°–33° in 3° increments), IP55 Class H motor construction, and bare or silenced configurations.

Static Thrust Range
191 to 3,046 N Bare Fan
Exit Velocity
16 to 45.5 m/s High Momentum
Diameter Range
9 Sizes from Ø630 to Ø1,600 mm
Blade Angles
18° to 33° Adjustable (6 Settings)
Primary Applications

Longitudinal highway tunnels, railway tunnels, service tunnels, and unidirectional smoke-control zones.

02 · SDS(R) Reversible Bidirectional & Reversible · ≤30s Switchover

SDS(R) Reversible Tunnel Jet Fan

Fully reversible jet fan for bidirectional tunnels and emergency smoke redirection. Utilizes a symmetric blade profile capable of full forward-to-reverse switchover within 30 seconds at rated speed. Thrust is approximately 4–6% lower than the equivalent unidirectional SDS model.

Reversal Time
Forward to Reverse ≤30 Seconds
Blade Geometry
Symmetric Reversible Aerodynamic Profile
Thrust Difference
~4–6% Lower Thrust vs Unidirectional SDS
Motor Build
IP55 Enclosure / Class H Insulation
Primary Applications

Bi-directional highway tunnels, multi-scenario emergency smoke evacuation, and portal-reversible ventilation.

03 · Jet Silencers Acoustic Attenuation · 9–14 dB(A) Reduction

1D & 2D Matched Jet Fan Silencers

Inlet and outlet sound attenuators engineered specifically for the SDS family. 1D (1× diameter length) and 2D (2× diameter length) silencers provide approximately 9–14 dB(A) sound-pressure reduction, reducing portal and tunnel noise to municipal environmental standards (52–87 dB(A) series range).

Length Options
1D (1× Diameter) & 2D (2× Diameter)
Noise Attenuation
9 to 14 dB(A) Sound Pressure Drop
Perforated Liner
Stainless/Galvanized Perforated Retainer
Acoustic Media
Non-Combustible Mineral Acoustic Infill
Primary Applications

Metro tunnels, station-adjacent portal zones, urban road tunnels, and noise-sensitive residential portals.

04 · PYHL-14A Ductless Jet Induction · 280 °C / 30 min Fire

PYHL-14A Jet-Induction Exhaust Fans

Mixed-flow jet-induction fan for underground car parks, tunnels, and large enclosed basements. Eliminates bulky distribution ductwork by inducing space air movement toward exhaust shafts. Documented smoke-extraction configuration rated for 280 °C / 30 min fire duty.

Operating Concept
Ductless Momentum Jet Induction
Fire Duty
280 °C for 30 Minutes Certified Build
Combined Capacity
To 105,988 m³/h & 3,325 Pa Total
Mounting Type
Ceiling-Suspended Adjustable Direction
Primary Applications

Underground car parks, basement loading docks, logistics centers, and vehicular tunnel induction zones.

05 · HL3-2A Ducted Ducted Underground Mixed-Flow · Sizes 2.5A–4A

HL3-2A Mixed-Flow Exhaust Fans

Ducted mixed-flow fan engineered for underground systems requiring moderate-to-high static pressure to overcome duct and shaft resistance. Features compact in-line casing, sizes 2.5A–4A, and high aerodynamic efficiency for car park and metro basement ducted exhaust.

Sizes Documented
2.5A to 4A Mixed-Flow Platform
Pressure Range
58 to 3,325 Pa Combined Envelope
Application
Overcoming Defined Duct/Shaft Friction
Drive & Mounting
Direct-Drive In-Line Flanged Casing
Primary Applications

Ducted car-park exhaust risers, metro basement exhaust shafts, and subterranean plant-room ventilation.

06 · DTF In-Duct In-Duct Tunnel / Station Axial · 280 °C / 30 min

DTF Axial-Flow Tube Exhaust Fans

In-line tube-axial fan for conventional ducted tunnel ventilation shafts, metro stations, and plant rooms (1,886–114,829 m³/h, 115–2,266 Pa, Ø350–1600 mm, 0.5–45 kW). Documented continuous duty to 100 °C, fire-rated 280 °C / 30 min build, and optional ExdbIIBT4/CT4 explosion-proof ratings.

Airflow Capacity
1,886 to 114,829 m³/h
Total Pressure
115 to 2,266 Pa High Static
Emergency Duty
280 °C / 30 min Smoke Exhaust
Hazardous Ex
Optional ExdbIIBT4 / ExdbIICT4 Marking
Primary Applications

Metro station platform exhaust, tunnel vertical ventilation shafts, and hazardous subterranean extract.

03 / Selection Routing

Tunnel & Underground Fan Selection Matrix

Match underground ventilation conditions to the appropriate fan family, documented limits, and initial design input.
System ConditionFirst Product Family to EvaluateDocumented BoundaryFirst Design Input
Longitudinal airflow in one directionSDS Jet Fan191–3,046 N static thrust · Ø630–1600mmRequired effective installed thrust
Longitudinal airflow with 30s reversalSDS(R) Reversible Jet FanReverse ≤30s; ~4–6% lower thrust vs SDSEmergency smoke airflow direction
Ductless underground car park inductionPYHL-14A Induction FanFire-rated version 280 °C / 30 minSpace geometry, beam heights & shafts
Ducted underground car park exhaustHL3-2A Mixed-FlowCombined family 561–105,988 m³/h, 58–3,325 PaAirflow (m³/h) + duct resistance (Pa)
In-duct tunnel / metro station exhaustDTF Axial Fan1,886–114,829 m³/h, 115–2,266 PaAirflow (m³/h) + external static pressure
04 / Procurement Protocol

Information Required for Tunnel & Jet Fan Sizing

Provide tunnel length, cross-sectional area, target air velocity, required thrust, traffic/emission data, and smoke scenarios.
STEP 01

Tunnel Geometry & Velocity

Provide tunnel cross-section area (m²), length (m), portal elevations, and target longitudinal air velocity (m/s).

STEP 02

Installed Thrust Calculation

Calculate required total thrust (N) factoring tunnel velocity, wall friction, and grouping losses (C2, C3).

STEP 03

Fan Selection & Reversal

Select SDS unidirectional or SDS(R) reversible models, diameter (Ø630–1600 mm), and blade angle (18°–33°).

STEP 04

Acoustics & Fire Duty

Specify 1D or 2D silencers to meet portal noise limits, and verify 280 °C / 30 min fire emergency certificates.

Engineering Handoff

Submit Tunnel & Car Park Parameters for Aerodynamic Sizing

YONGFAN aerodynamic engineers will calculate momentum thrust transfer, model jet fan spacing, verify reversal switchover sequences, and provide thrust test reports.

Tunnel Length (m) & Cross-Sectional Area (m²)
Design Tunnel Air Velocity (m/s) & Traffic Volume
Required Total Effective Thrust (N) & Fan Count
Reversibility Requirement: SDS (1-Way) vs SDS(R) (2-Way)
Acoustic Criteria: Portal Noise Limits & 1D/2D Silencers
Fire Emergency Strategy: 280 °C / 30 min Smoke Scenarios
05 / Manufacturing QA

GB/T 13351 Thrust Testing & Jet Fan Quality Standards

Every jet fan undergoes thrust measurement on a dedicated test rig, dynamic impeller balancing, and high-temp fire verification.
Thrust QA

Dedicated Thrust Rig Testing

SDS jet fans undergo static thrust measurement on a dedicated test rig per GB/T 13351 at standard air density ρ=1.2 kg/m³.

Balance QA

Dynamic Impeller Balancing

Precision aluminum/steel impellers are dynamically balanced to ISO 1940 G2.5 to eliminate vibration under high velocity.

Motor QA

IP55 / Class H Motor Build

Heavy-duty totally enclosed motors feature IP55 ingress protection and Class H insulation for harsh tunnel environments.

Casing QA

Corrosion-Resistant Coating

Casings undergo degreasing, phosphating, passivation, and heavy electrostatic powder coating for corrosive tunnel air.

Standard SDS Jet Fans: SDS and SDS(R) jet fans fabricated to ordered blade angle in 25–35 working days. PYHL & Ducted Fans: PYHL-14A induction fans and HL3-2A ducted fans dispatched with test certificates.
06 / Engineering Knowledge

Tunnel & Underground Ventilation FAQ

Direct engineering answers regarding SDS vs SDS(R), thrust calculations, silencers, and car-park induction.

What is the difference between SDS and SDS(R)?

SDS is unidirectional. SDS(R) uses a symmetric blade profile for reversible operation and reverses from forward to reverse within 30 seconds. SDS(R) thrust is ~4–6% lower than SDS.

What is the SDS thrust range?

YONGFAN documents 191 to 3,046 N static thrust across impeller sizes Ø630 to Ø1600 mm (bare fan reference values).

Why can’t I calculate fan count from catalog thrust alone?

Because installed effective thrust drops as tunnel air velocity rises: Ne = Ns × (1 − Vt/Vj) × C2 × C3. Tunnel speed, wall friction, and grouping losses must be included.

What is the difference between PYHL-14A and HL3-2A?

PYHL-14A is a ceiling-suspended ductless jet-induction fan for car parks. HL3-2A is an in-line ducted mixed-flow fan designed to overcome high duct resistance.

Does PYHL-14A have a fire-rated version?

Yes. The source documents a PYHL-14A smoke-extraction version certified for 280 °C / 30 min fire duty.

Can DTF axial fans be used underground?

Yes. DTF fans are documented for in-duct tunnel ventilation shafts, metro stations, and basement car parks with fire-rated and explosion-proof builds available.

What do 1D and 2D mean on SDS silencers?

They describe silencer length relative to fan diameter (1× or 2× diameter). 1D/2D silencers provide approximately 9 to 14 dB(A) sound-pressure attenuation.

Does complete tunnel airflow reverse within 30 seconds when SDS(R) reverses?

No. The fan impeller reverses within 30 seconds, but the massive inertia of the moving tunnel air column takes longer to decelerate and reverse.

Should a reversible fan always be selected?

No. If your fire/ventilation strategy uses a single fixed direction, unidirectional SDS provides ~4–6% higher thrust and lower cost.

What information is needed before selecting a tunnel jet fan?

Tunnel geometry, target air velocity, required effective thrust, traffic/emission data, fire scenarios, airflow directions, and portal noise limits.

07 / Application Boundaries

Tunnel & Underground Engineering Boundaries

Key operational boundaries to respect when designing tunnel and underground ventilation systems.
Boundary 01 / Installed Thrust

In-Situ Derating Required

Catalog static thrust is measured at zero tunnel velocity; aerodynamic in-situ derating based on tunnel velocity and wall clearance is mandatory.

Boundary 02 / Fire Testing

Project Certificate Check

Confirm the exact project fire-test certificate for ordered SDS configurations before scheduling code-defined high-temperature duty.

Boundary 03 / Car Park Coverage

CFD & Shaft Coordination

PYHL-14A ductless jet induction requires coordinated exhaust shafts and computational fluid dynamics (CFD) modeling to verify zero dead zones.

Boundary 04 / Reversible Symmetry

4–6% Thrust Penalty

SDS(R) symmetric blades have lower aerodynamic efficiency than unidirectional SDS; do not assume identical thrust between SDS and SDS(R).

08 / Engineering Handoff

Plan Your Tunnel & Underground Ventilation System

Send your tunnel geometry, target longitudinal air velocity, car park layout, and smoke control scenarios. YONGFAN aerodynamic engineers will calculate installed thrust, select jet fans, and supply certified submittals.

SDS Unidirectional Jet Fans (191–3,046 N Thrust)SDS(R) 30-Second Reversible Jet Fans1D & 2D Matched Diameter Silencers (9–14 dB(A))PYHL-14A Ductless Car Park Induction (280 °C / 30 min)HL3-2A Ducted Mixed-Flow Exhaust (Sizes 2.5A–4A)DTF In-Duct Axial Fans (Ø350–Ø1600 mm, 2,266 Pa)IP55 Class H Heavy-Duty Tunnel MotorsGB/T 13351 Certified Thrust Test Submittals
YONGFAN aerodynamic engineers reviewing tunnel longitudinal ventilation CFD models and thrust calculations
Direct Tunnel Engineering Handoff
Installed thrust calculations, 30s reversal verification & GB/T 13351 certified thrust submittals.