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Tunnel sind bedeutende Infrastrukturbauwerke. Die Beurteilung der Folgen von Brandereignissen in Tunneln ist daher auch von außerordentlicher volkswirtschaftlicher Bedeutung. Ein solches Brandereignis stellt z.B. der Brand eines mit Benzin beladenen Tanklastzugs dar. Im Rahmen eines Forschungsvorhabens für die Bundesanstalt für Straßenwesen (BASt) wurden verschiedene Szenarien für diesen Extremfall mit unterschiedlichen Energiefreisetzungsraten und deren Einfluss auf die Tunneltragsicherheit mittels numerischer Strömungssimulationen und Finite-Elemente-Berechnungen untersucht. Es konnte gezeigt werden, dass selbst Brandszenarien mit Flüssigkeitslachenbränden von bis zu 28 t Benzin durch die ZTV-ING-Temperatur-Zeit-Kurve abgedeckt werden können. Der folgende Beitrag fasst die wesentlichsten Ergebnisse zusammen.
Immediate user self-evacuation is crucial in case of fire in road tunnels. This study investigated the effects of information with or without additional virtual reality (VR) behavioural training on self-evacuation during a simulated emergency situation in a road tunnel. Forty-three participants were randomly assigned to three groups with accumulating preventive training: The control group only filled in questionnaires, the informed group additionally read an information brochure on tunnel safety, and the VR training group received an additional behavioural training in a VR tunnel scenario. One week later, during the test session, all participants conducted a drive through a real road tunnel in which they were confronted with a collision of two vehicles and intense smoke. The informed and the behaviourally trained participants evacuated themselves more reliably from the tunnel than participants of the control group. Trained participants showed better and faster behavioural responses than informed only participants. Interestingly, the few participants in the control group who reacted adequately to the scenario were all female. A 1 year follow-up online questionnaire showed a decrease of safety knowledge, but still the trained group had somewhat more safety relevant knowledge than the two other groups. Information and especially VR behavioural training both seem promising to foster adequate self-evacuation during crisis situations in tunnels, although long term beneficial behavioural effects have to be demonstrated. Measures aiming to improve users/ behaviour should take individual difference such as gender into account.
Fire incidents are among the most relevant for people in a tunnel. Therefore, it is important to be sufficiently prepared for such events. A large scale fire test is to be used to help evaluate the initial burning duration and the time it takes for the fire to spread to other vehicles in the tunnel, and in particular how long it takes for a truck carrying wooden pallets to catch fire, taking into consideration the extremely high temperatures. The goal, therefore, is to determine the time it takes for a fire to spread to other vehicles in the tunnel. In the large scale fire test, an accident in a tunnel with one-way traffic is simulated between a truck loaded with approximately 3.7 t of wooden Europol pallets and a passenger car. Directly behind each of the vehicles involved in the accident there is another car which stops at a distance of 1.0 m. Approximately 300 litres of burning diesel are discharged from the truck's fuel tank, which is simulated by using approximately 400 litres of isopropanol. A 10 m-² burning pool forms underneath the truck. Other objectives of the large scale fire test are the validation of the CFD models and the evaluation of the progression of the thermal release ratios estimated for the simulation. The thermal release ratios generated in the test are determined and evaluated using various models.