Tunnel Fire Risk
Abnormal temperature rise and fire development in enclosed road, rail and metro tunnel environments.
Fiber Optic Monitoring for Tunnels, Transit Hubs and Secure Transport Networks
REQUEST A QUOTERoad, rail and metro tunnels, airports and seaports operate under different conditions, but they share one requirement: problems must be located quickly without interrupting service.
Tunnels require thermal safety across enclosed routes. Airports and seaports add electrical systems, baggage handling, fuel areas, perimeter security and utility corridors.
FOTAS addresses these risks with Distributed Temperature Sensing (DTS) and Distributed Acoustic Sensing (DAS).
DTS measures temperature along the sensing fiber, while DAS detects acoustic and vibration activity around the cable. The technologies work independently or within one monitoring architecture.
Transportation assets are difficult to inspect continuously. Access may be restricted, maintenance windows are short and many systems must remain operational. Tunnels introduce dust, humidity, vibration and high-voltage equipment. Airports and seaports add outdoor exposure, salt, heavy traffic and restricted areas.
Abnormal temperature rise and fire development in enclosed road, rail and metro tunnel environments.
Thermal faults affecting cables, joints, motors, bearings, substations and electrical equipment.
Ventilation faults and incomplete thermal information during normal operation or emergency response.
Unauthorized access, fence interference and movement around controlled transportation infrastructure.
Construction and digging activity close to communication, signaling and utility corridors.
Fire and equipment risks across fuel handling, cargo storage and bulk-material operations.
Distributed linear temperature monitoring for road, rail and metro tunnel environments.
FOTAS DTS uses optical fiber as a linear temperature sensor. The control unit sends laser pulses through the fiber and analyzes Raman backscatter to calculate temperature along the route.
In road, rail and metro tunnels, the sensing cable is generally mounted near the ceiling, with its position defined by tunnel geometry and airflow.
Alarm logic may combine fixed temperature thresholds, rate-of-rise criteria and differential temperature profiles. When an abnormal event develops, the system identifies the affected section and passes the alarm to connected safety systems.
Distributed temperature information across electrical, mechanical, cargo and underground infrastructure.
An airport or seaport may include terminals, substations, utility tunnels, baggage systems, conveyors, storage zones and fuel infrastructure. DTS follows these assets with a sensing route instead of relying only on isolated points.
Temperature trends reveal overheating motors, bearings, rollers and friction points on baggage systems. Along electrical routes, DTS identifies hot connections and developing cable faults.
DTS monitors bulk-material conveyors, container storage areas, electrical routes, jetty infrastructure and selected pipeline sections.
For port pipelines, thermal monitoring supports wider leak detection strategies, but it is not a universal leak detector.
Distributed acoustic and vibration monitoring for restricted boundaries and critical infrastructure routes.
FOTAS DAS converts fiber into a distributed acoustic and vibration sensor. Fence-mounted, buried and hybrid installations support airport and port boundaries, restricted corridors and external communication routes.
Deep-learning analytics classify walking, digging, vehicle movement, fence climbing and fence cutting. Environmental filtering reduces nuisance alarms, while location data helps security teams direct cameras or patrols.
DTS and DAS control units are installed in control rooms or equipment rooms. Monitoring data connects to SCADA, BMS, tunnel management, fire alarm and security platforms.
Tunnel designs may use Modbus communication and hardwired relay outputs for integration with operational and fire-safety systems.
The sensing fiber is passive and requires no electrical power along the monitored route. It is also immune to electromagnetic interference, which is valuable near traction power, signaling systems, substations and heavy electrical equipment.
Successful deployment depends on decisions made during the design stage. These details determine alarm quality and the accuracy of location information.
Learn how DTS and DAS support fire safety, asset monitoring and security across critical infrastructure.
Talk to our engineering team about a FOTAS DTS or DAS configuration for tunnels, airports, seaports and secure transport corridors.