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Seit Anfang der 70er Jahre kann im Bereich der passiven Sicherheit eine stetige Verbesserung durch die Abnahme der im Verkehr verletzten und getöteten Personen beobachtet werden. Weitere fahrzeugtechnische Optimierungen zur Verbesserung von Selbst- und Partnerschutz, unterstützt und forciert durch flankierende legislative Maßnahmen, sind durchzuführen, wobei parallel die Effizienz bereits getroffener Maßnahmen zu prüfen ist. In der Pilotstudie wird der Versuch gemacht, ausgehend von bekannten Erkenntnissen der Unfallanalyse, das Gesamtunfallgeschehen Pkw zu realitätsbezogenen, in ihren Wirkungsmechanismen gleichartigen Unfallkonstellationen zusammenzufassen. Die Reduzierung auf wenige Kollisionstypen schafft die Möglichkeit zur Erarbeitung von Testbedingungen. Die im Test nachzufahrenden Unfallkonstellationen und die statisch/dynamische Untersuchung einzelner Fahrzeugkomponenten dokumentieren sich in physikalischen Messwerten und fahrzeugbezogenen Größen. Ein Bewertungssystem addiert die Messwerte auf und versieht sie mit relevanzproportionalen Wichtungsfaktoren zu einem Sicherheitsgrad. Praktische Bedeutung hat das Projekt zum Beispiel für die quantitative Ermittlung des Sicherheitsfortschrittes innerhalb eines Zeitraumes von 10 bis 15 Jahren, der Untersuchung von Sicherheitskomponenten und der Effizienzüberprüfung legislativer Sicherheitsverordnungen etc.
Today's volumes of traffic require more and more responsibility from each individual road user in their interactions. Those who drive motor vehicles have the singular obligation to minimise the risk of accidents and hence the severity of injuries, particularly with a view to the most vulnerable road users such as motor bikes, bikes and pedestrians. Since responsible and pro-active driving depends first and foremost on the visual information relayed by our eyes and the visual channel this requires good command of the traffic and all-round visibility from our driver's seat. Granted that human error can never be fully excluded, improving visibility around the car is nevertheless an urgent priority. To do so, we need to rate visibility in the most realistic driving situations. Since the existing visibility metrics and methodology are not applicable to real-life driving situations, this study aimed at developing a new visibility rating methodology based on real-life accident scenarios. On the basis of the cases documented by the accident research project, this study analysed criteria indicative of diminishing visibility on the one hand and revealing some peculiarities in connection with the visibility issue on the other. Based on the above, the project set out to develop a rating methodology allowing to assess all-round visibility in various road situations taking into account both driver and road geometries. In this context, the assessment of visibility while turning a corner, crossing an intersection and joining traffic on a major road (priority through route) is of major importance. The first tests have shown that critical situations can be avoided by adapting the relevant geometries and technical solutions and that significant improvements of road safety can be derived therefrom.
Erkenntnisse über den Nutzen zusätzlicher hochgesetzter Bremsleuchten sind lückenhaft und zum Teil widersprüchlich. Im Rahmen einer Untersuchung über den Einfluss zusätzlicher Bremsleuchten auf das Unfallgeschehen wurden u.a. folgende Fragen behandelt: 1. Entwicklung der Unfälle durch Auffahren auf Fahrzeuge, die mit zusätzlichen Bremsleuchten ausgerüstet sind, 2. Entwicklung der Auffahrunfälle insgesamt, 3. Verletzungen von Fahrzeuginsassen durch Leuchten, 4. Auswirkungen auf die übrigen Verkehrsteilnehmer (Abstand, Blendung, Fehlreaktion). Anhand konkreter Daten über das Unfallgeschehen in Bayern und Niedersachsen kommt der Beitrag insgesamt zu dem Urteil, dass die derzeitige Regelung weder durch eine Einbauvorschrift noch durch ein Einbauverbot hochgesetzter Bremsleuchten ersetzt werden müsste.
Although the bus belongs to the safest traffic means, single accidents can be particularly severe and concern many passengers. Especially in case of fires a high number of injured and killed persons can be the outcome. Fire safety of buses therefore is of high importance. With the increase of plastic materials as a material for the interior equipment of buses and coaches due to their good mechanical properties combined with low weight, the question arises whether the safety level has decreased in case of a fire during the last years " also compared to other means of transport. Because of the combustible plastics and their ability to release a high amount of heat the main fire load in buses is no longer the fuel but the plastic materials which are also often easy to ignite. Besides the flammability of the equipments, also the production of smoke, the smoke development and propagation as well as its toxicity are of interest. That counts for the passengers as well as for the test methods and its limit values. The severe fire in Germany near Hanover in 2008 with 20 fatalities showed how disastrous such fires can be. For those reasons several research projects were initiated on behalf of the German Federal Highway Research Institute. At the one hand the fire behaviour of coach interiors was examined in general focusing on fire propagation as well as fire detection and signalling. As result, recommendations with regard to early fire detection systems for the engine compartments and onboard extinguishing equipment were elaborated. On the other hand research was carried out to examine heat release, smoke, smoke propagation and its toxicity due to burning bus interior materials. In this project small and real scale experiments on material specimens, interior parts and vehicles were performed. Trains and buses often have very similar operation conditions. Consequently, bus interior material was tested according to the regulations for rail vehicles, i.e. DIN EN 45545 as well as DIN 5510. None of the tested bus interior materials would have been allowed to use in a train. The fire safety regulations for bus materials are on a low level compared to other transport sectors, i.e. railway, ship and aircraft. Also numerical investigations with the Fire Dynamics Simulator (FDS) were performed. The very rapid fire development during the severe bus fire from 2008 could be predicted with the numerical model. The model was then used to investigate the influence of different materials, ventilation conditions and ignition sources. The bus materials contribute significantly to a very rapid fire development in bus fires. Especially, the flammable ceiling and the passenger seats were identified to be key issues of the fire propagation in a bus and can be explained by the rapid fire spread along the ceiling and the high fire load of passenger seats. As conclusion of the project effective and economically reasonable fire safety requirements for interiors of buses are recommended which would improve the current situation. Proposals for amendments of current requirements are recommended including the specification of appropriate limit values. In particular, it is taken into consideration which reasonable fire safety standards from other transport sectors, especially the rail sector, should be transferred to buses
At the 2005 ESV conference, the International Harmonisation of Research Activities (IHRA) side impact working group proposed a 4 part draft test procedure, to form the basis of harmonisation of regulation world-wide and to help advances in car occupant protection. This paper presents the work performed by a European Commission 6th framework project, called APROSYS, an further development and evaluation of the proposed procedure from a European perspective. The 4 parts of the proposed procedure are: - A Mobile Deformable Barrier test; - An oblique Pole side impact test; - Interior headform tests; - Side Out of Position (OOP) tests. Full scale test and modelling work to develop the Advanced European Mobile Deformable Barrier (AE-MDB) further is described, resulting in a recommendation to revise the barrier face to include a bumper beam element. An evaluation of oblique and perpendicular pole tests was made from tests and numerical simulations using ES-2 and WorldSID 50th percentile dummies. It was concluded that an oblique pole test is feasible but that a perpendicular test would be preferable for Europe. The interior headform test protocol was evaluated to assess its repeatability and reproducibility and to solve issues such as the head impact angle and limitation zones. Recommendations for updates to the test protocol are made. Out-of-position (OOP) tests applicable for the European situation were performed, which included additional tests with Child Restraint Systems (CRS) which use is mandatory in Europe. It was concluded that the proposed IHRA OOP tests do cover the worst case situations, but the current test protocol is not ready for regulatory use.
Although the bus belongs to the safest traffic means, single accidents can be particularly severe and concern many passengers. Especially in case of fires a high number of injured and killed persons can be the outcome. Fire safety of buses therefore is of high importance. With the increase of synthetic and plastic materials as a material for the interior equipment of buses and coaches because of their ood mechanical properties combined with low weight, the question arises whether the safety level has decreased in case of a fire during the last years - also compared to other means of transport. Because of the combustible plastics and their ability to release a high amount of heat the main fire load in buses is no longer the fuel but the plastic materials which are also often easy to ignite. Besides the flammability of the equipments, the production of smoke, the smoke development and propagation and its toxicity for the people as well as the testing methods and limit values are of interest. For those reasons research projects were initiated on behalf of the German Federal Highway Research Institute. At the one hand the fire behavior of coach interiors was examined in general focusing on fire propagation as well as fire detection and signalling. As result, recommendations with regard to early fire detection systems for the engine compartments and on-board extinguishing equipment were elaborated. At the other hand research is carried out to examine heat release, smoke, smoke propagation and its toxicity due to burning bus interior materials. The paper describes which effective and economically reasonable fire safety requirements for interiors of buses would improve the current situation. Proposals for amendments of current requirements are recommended including the specification of appropriate limit values. In particular, it is taken into consideration which reasonable fire safety standards from other transport sectors, especially the rail sector, should be transferred to buses.
Automotive interiors have long been a potentially injurious impact area to occupants during accidents, especially in the absence of adequate padding. The U.S. Federal Motor Vehicle Safety Standard (FMVSS) 201, Occupant Protection in Interior Impact, outlines test procedures and performance criteria in order to mitigate potentially injurious head impacts to interior surfaces. FMVSS 201 specifies a finite set of impact locations and applies to passenger vehicles of a specified year range and with a gross vehicle weight rating less than 10,000 lb. In this paper, two head impact test methodologies are presented, a pendulum-test device and a Free Motion Headform (FMH) launching device, which allows for dynamic, repeatable impact evaluation of various vehicle interior surfaces and their impact attenuation abilities. The presented testing includes multiple series that evaluate the effect of differing vehicle upper interior padding on occupant head injury. One study in particular, analyzes a head impact to the side header of a heavy truck (not included in FMVSS 201) during a 90 degree rollover. Additionally, two other series of tests are presented which assess the injury reduction effect of side airbags to near side as well as far side occupants in a side impact scenario. Lastly, a forensic analysis is presented which evaluates two possible head impact locations experienced in a real world accident by analysis of the resulting interior compartment damage utilizing the FMH launching device test method. The data collected and presented includes accelerometer instrumentation and high speed video analysis. These studies demonstrate that adequate padding and airbags are very effective at mitigating head injury potential at impact speeds of 12-25 mph (19-40 kph).
Description of road traffic related knee injuries in published investigations is very heterogeneous. The purpose of this study was to estimate the risk of knee injuries in real world car impacts in Germany focusing vulnerable road users (pedestrians, bicyclists and motorcyclists) and restrained car drivers. The accident research unit analyses technical and medical data collected shortly after the accident at scene. Two different periods (years 1985-1993 and 1995-2003) were compared focusing on knee injuries (Abbreviated Injury Scale (AISKnee) 2/3). In order to determine the influences type of collision, direction and speed as well as the injury pattern and different injury scores (AIS, MAIS, ISS) were examined. 1.794 pedestrians, 742 motorcyclists, 2.728 bicyclists and 1.116 car drivers were extracted. 2% had serious ligamentous or bony injuries in relation to all injured. The risk of injury is higher for twowheelers than for pedestrians, but knee injury severity is higher for the latter group. Overall the current knee injury risk is low and significant reduced comparing both time periods (27%, p<0,0001). Severe injuries (AISKnee 2/3) were below 1%). Improved aerodynamic design of car fronts reduced the risk for severe knee injuries significantly (p=0,0015). Highest risk of injury is for motorcycle followed by pedestrians, respectively. Knee protectors could prevent injuries by reducing local forces. The classically described dashboard injury was rarely identified. The overall injury risk for knee injuries in road traffic is lower than estimated and reduced comparing both periods. The aerodynamic shape of current cars compared to older types reduced the incidence and severity of knee injuries. Further modification and optimization of the interior and exterior design could be a proper measurement. Classic described injury mechanisms were rarely identified. It seems that the AIS is still underestimating extremity injuries and their long term results.
In spite of today's highly sophisticated crash test procedures like the different NCAP programs running world-wide, bad real world crash performance of cars is still an issue. There are crash situations which are not sufficiently represented by actual test configurations. This is especially true for car to car, as well as for car to object impacts. The paper describes reasons for this bad performance. The reasons are in principal bad structural interaction between the car and its impact partners (geometric incompatibility), unadjusted front end stiffness (stiffness incompatibility) and collapse of passenger compartments. To show the efficiency of improving cars' structural behaviour in accidents with different impact partners an accident data analysis has been taken out by members of European Project VC-COMPAT. Accident data analysis has shown that in Germany between 15,000 and 20,000 of the now severely injured car occupants might get less injured and between 600 and 900 car occupant fatalities might be saved. Similar results arise for the UK.
Die Europäische Kommission strebt an, die Zahl der im Straßenverkehr Getöteten in der EU bis zum Jahr 2010 zu halbieren, unter anderem durch den Einsatz von fahrzeuggestützten Notrufsystemen. Ziel der vorliegenden Studie ist es, die spezifischen Rahmenbedingungen in Deutschland für die mögliche Einführung eines fahrzeuggestützten Notrufsystems zu analysieren und eine darauf abgestimmte Umsetzungsempfehlung zu erarbeiten. Methodik: Im Rahmen einer deskriptiven Analyse werden einerseits die deutschen Rahmenbedingungen bezüglich der Straßenverkehrsunfälle sowie der Strukturen und Leistungen des Rettungsdienstes erfasst. Andererseits werden Anforderungen an fahrzeuggestützte Notrufsysteme formuliert und die bestehenden Systemlösungen untersucht. Nach einer Klassifikation der möglichen Systemvarianten werden zwei ausgewählte Systemvarianten mit der Methodik der gesundheitsökonomischen Evaluation (Kosten-Wirksamkeits-Analyse) aus gesellschaftlicher Sicht analysiert. Zur qualitativen Bewertung wird eine Nutzwertanalyse mittels einer Befragung verschiedener Interessengruppen durchgeführt. Ergebnis: Je nach betrachteter Systemvariante und Ausgestaltungsform entstehen Kosten (inklusive Kosteneinsparungen) in Höhe von 1,5 bis 5,5 Milliarden Euro für die Gesellschaft. Werden diese Kosten auf die mit eCall ausgestatteten Fahrzeuge verteilt, ergeben sich rechnerisch pro Fahrzeug Kosten in Höhe von 47 bis 168 Euro. Diesen stehen im Betrachtungszeitraum von zehn Jahren 390 bis 438 gerettete Personen und eine Reduktion der Anzahl der Schwerverletzten um 11.879 bis 13.364 entgegen. Lediglich bei der kostengünstigsten Ausgestaltungsform des eCall-Systems im Fahrzeug als integrierte Lösung können die Kosteneinsparungen die Kosten für die Gesellschaft übersteigen. Unter monetär bewerteten Kosten- und Nutzengesichtspunkten aus gesamtgesellschaftlicher Perspektive kommt der organisatorischen Ausgestaltungsform des Systems (zentral/dezentral) keine Bedeutung zu. Im Rahmen der Nutzwertanalyse konnte bei den unterschiedlichen Interessengruppen keine eindeutige Präferenz für eine der Systemvarianten festgestellt werden. Die Vertreter der Automobilindustrie, der Medizin, der Politik/Gesellschaft, des Rettungsdienstes und der Wissenschaft bevorzugen die Systemvariante, bei der die Erstbearbeitung der Notrufe in den dezentral organisierten Rettungsleitstellen erfolgt. Die Vertreter der Automobil-Zulieferindustrie, der Serviceprovider und der Versicherungen ziehen die Systemvariante vor, die auf einer zentralen Erstbearbeitung der Notrufe beruht. Fazit: Die Einführung eines fahrzeuggestützten Notrufsystems in Deutschland ist mit hohen gesellschaftlichen Kosten verbunden, die in der Basisbetrachtung mit realistischen Annahmen deutlich über dem monetär bewerteten Nutzenpotenzial liegen. In der vorliegenden Evaluation wird deutlich, dass Kosteneinsparungen für die Gesellschaft auch bei optimistischen Nutzenannahmen in Bezug auf die Wirksamkeit zur Reduzierung der Getöteten und Schwerverletzten im Straßenverkehr nur bei den kostengünstigsten Varianten von fahrzeuggestützten Notrufsystemen realisierbar sind. Im Rahmen dieser Studie kann deshalb für die europaweite Einführung von fahrzeuggestützten Notrufsystemen nur die kostengünstigere Variante empfohlen werden, die in den Fahrzeugen bereits vorhandene Module (zum Beispiel GNSS-Systeme und das Mobilfunktelefon der Insassen) einbezieht. Eine freiwillige Markteinführung der Systeme würde dazu führen, dass eCall-Systeme insbesondere dann in Fahrzeugen integriert werden, wenn dafür geringe Mehrkosten anfallen oder wenn Risikogruppen ihren Nutzen besonders hoch einschätzen. Bei einem derartigen Implementierungsszenario würden damit die Kosten, die den Systemen zuzurechnen sind, sinken, da vorhandene Technik im Fahrzeug genutzt wird. Bei einer freiwilligen Einführung von fahrzeuggestützten Notrufsystemen in Deutschland wird letztlich der Nutzer über den Erfolg von eCall entscheiden.