Nicht zuletzt aufgrund schwerwiegender Ereignisse in zwei Alpentunneln wird die Sicherheit von Straßentunneln in der öffentlichen Diskussion kritisch hinterfragt. Im Rahmen eines Forschungsvorhabens über Straßentunnel in Deutschland wurden unter anderem Unfalldaten von 46 Autobahntunneln und 22 Tunneln an zweistreifigen Landstraßen erhoben und ausgewertet. Unterschiede zwischen dem Unfallgeschehen im Tunnel und freien Strecken lassen sich bereits aus dem veränderten Umfeld im Tunnel ableiten. Einzelne tunnelspezifische Unfallsituationen können beschrieben werden. Ein wesentlicher Schwerpunkt der Untersuchung war die Ermittlung typischer Unfallkenngrößen für verschiedene Tunnelquerschnitte. Anhand der vorliegenden Unfallraten und Unfallkostenraten konnte nachgewiesen werden, dass in Tunneln weniger Unfälle geringerer Schwere auftreten als auf vergleichbaren freien Strecken. Besonders schwerwiegende Unfälle, verbunden mit Bränden, konnten in den untersuchten deutschen Straßentunneln nicht beobachtet werden.
The project UR:BAN "Cognitive assistance (KA)" aims at developing future assistance systems providing improved performance in complex city traffic. New state-of-the-art panoramic sensor technologies now allow comprehensive monitoring and evaluation of the vehicle environment. In order to improve protection of vulnerable road users such as pedestrians and cyclists, a particular objective of UR:BAN is the evaluation and prediction of their behaviour and actions. The objective of subproject "WER" is development support by providing quantitative estimates of traffic collisions at the very start and predict potential in terms of optimized accident avoidance and reduction of injury severity. For this purpose an integrated computer simulation toolkit is being devised based on real world accidents (GIDAS as well as video documented accidents), allowing the prediction of potential effectiveness and future benefit of assistance systems in this accident scenario. Subsequently, this toolkit may be used for optimizing the design of implemented assistance systems for improved effectiveness.
Das Verkehrsverhalten und die Verkehrssicherheit an Baustellen auf Bundesautobahnen untersucht. Vorrangiges Ziel des Projektes war es, den kontinuierlichen Verlauf der Geschwindigkeiten entlang der gesamten Baustelle sowie Verzögerungsprozesse und das Abstandsverhalten der Fahrzeuge genauer zu analysieren. Dazu wurden im November/Dezember 1987 Versuchsfahrten mit einem instrumentierten Messfahrzeug an Baustellen im Großraum Köln durchgeführt. Es kamen 22 Versuchspersonen zum Einsatz, die bei den Fahrten jeweils 7 Baustellenabschnitte durchfahren mussten. Als Ergänzung wurde eine Befragung der Versuchspersonen und eine Unfallanalyse der relevanten Teilstrecken vorgenommen. Die Ergebnisse zeigen, dass die zulässige Höchstgeschwindigkeit sowohl bei der Annäherung als auch innerhalb der Baustellen fast durchgängig von allen Fahrern deutlich überschritten wurde (im Mittel zwischen 9 und 25 km/h). Die Verzögerungsprozesse passten sich mit einem gewissen Nachlauf von oben dem "Geschwindigkeitstrichter" an. In den Überleitungen war die Variationsbreite im Geschwindigkeitsverhalten am geringsten. Die Stärke der Verzögerungen war relativ gering. Es wurde in der Regel gleichmäßig verzögert, gefährlich kurze Abstände traten selten auf. Bei geringen Fahrstreifenbreiten kam es zu Überfahrungen der Nagelreihen. Die Fahrer legten die Geschwindigkeitsvorschriften großzügig aus, hielten jedoch die bestehende Beschilderungsform überwiegend für notwendig, um die Gefahrenstelle zu verdeutlichen. Die Unfallauswertung erbrachte eine deutliche Erhöhung der Unfallrate und eine abschnittsspezifische Häufung bestimmter Unfallarten innerhalb der Baustellenbereiche. Nicht angepasste Geschwindigkeit war die häufigste Unfallursache.
Introduction: The method of causation analysis applied under the German accident survey GIDAS, which is based on Accident Causation Analysis System (ACAS) focuses on an on-scene data collection of predominantly directly event-related causation factors which were crucial in the accident emergence as situational resulting events and influences. The paradigm underlying this method refers to the findings of the psychological traffic accident research that most causally relevant features of the system components human, infrastructure and vehicle technology are found directly in the situation shortly before the accident. This justifies the survey method which is conducted directly at the accident (on-scene), shortly after the accident occurrence (in-time) with the detection of human-related causes (in-depth). Human aspects of the situation analysis that interact and influence the risk situations shortly before the collision are reported as errors, lapses, mistakes and failures in ACAS in specific categories and subcategories. Thus methodically ACAS is designed primarily for the collection of accident features on the level of operational action, which certainly leads to valid findings and behavioral causes of accidents. The enhancement by means of Moderating Conditions concerns the pre-crash phase in different levels: strategical, tactical and operational.
Since its creation in 2011 the Pre-Crash-Matrix (PCM) offers the possibility to observe the pre-crash phase until five seconds before crash for a wide range of accidents. Currently the PCM contains more than 8.000 reconstructed accidents out of the GIDAS (German In-Depth Accident Study) database and is enlarged continuously by more than 1.000 cases per year. Hence, a detailed investigation of active safety systems in real accident situations has been made feasible. The PCM contains all relevant data in database format to simulate the pre-crash phase until the first collision of the accident for a maximum of two participants. This includes the definition of the participants and their characteristics, the dynamic behavior of the participants as time-dependent course for five seconds before crash as well as the geometry of the traffic infrastructure. The digital sketch of the accident and information from GIDAS as well as from supplementary databases represent the main input for the simulation of the pre-crash phase of an accident with the VUFO simulation model VAST (Vufo Accident Simulation Tool). This simulation in turn embodies the foundation of the PCM. The PCM underlies continual improvements and enhancements in consultation with its users. In addition to collisions of cars with other cars, pedestrians, bicycles and motorcycles the PCM now also covers car to object and car to truck collisions. The paper illustrates car to truck collisions as a showcase and explains perspectives for further developments. In 2016 a more detailed definition of the contour of the vehicle was added. Furthermore, the geometrical surroundings of the accident site will be provided in a new structure with a higher level of detail. Thus, a precise classification of road marks and objects is possible to further improve the support of developing and evaluating ADAS. This paper gives an overview about the latest developments of the PCM with its innovations and provides an outlook to upcoming enhancements. Besides potential areas of application for the development of ADAS are shown.
This study is aimed to investigate the correlations of impact conditions and dynamic responses with the injuries and injury severity of child pedestrians by accident reconstruction. For this purpose, the pedestrian accident cases were selected from Sweden and Germany with detailed information about injuries, accident cars, and accident environment. The selected accident cases were reconstructed using mathematical models of pedestrian and passenger car. The pedestrian models were generated based on the height, weight, and age of the pedestrian involved in accidents. The car models were built up based on the corresponding accident car. The impact speeds in simulations were defined based on the reported data. The calculated physical quantities were analyzed to find the correlation with injury outcomes registered in the accident database. The reconstruction approaches are discussed in terms of data collection, estimating vehicle impact speeds, pedestrian moving speeds and initial posture, secondary ground impact, validity of the mathematical models, as well as impact biomechanics.
Small overlap frontal crashes are defined by a damage pattern with most of the vehicle deformation concentrated outboard of the main longitudinal structures. These crashes are prominent among frontal crashes resulting in serious and fatal injuries, even among vehicles that perform well in regulatory and consumer information crash tests. One of the critical aspects of understanding these crashes is knowing the crash speeds that cause the types of damage associated with serious injuries. Laboratory crash tests were conducted using 12 vehicles in three small overlap test conditions: pole, vehicle-to-vehicle collinear, and vehicle-to-vehicle oblique (15-degree striking angle). Field reconstruction techniques were used to estimate the delta V for each vehicle, and these results were compared with actual delta V values based on vehicle accelerometer data. Estimated delta Vs were 50% lower than actual values. Velocity change estimates for small overlap frontal crashes in databases such as NASS-CDS significantly underestimate actual values.
Impact severity is a fundamental measure for all in-depth crash investigation projects. One methodology used in the UK is based on the US Calspan software package CRASH3. The UK- in-depth crash investigation studies routinely use AiDamage3 a software package which is based on an updated version of the original CRASH3 algorithm, including enhancements to the vehicle stiffness coefficients. Real world accident-damaged vehicles are measured and their crush is correlated with a library of stiffness coefficients. These measurements are then used, along with other parameters, to calculate the crash energy and equivalent changes of velocity of the vehicles (delta-v), which is a measure of the impact severity. UK in-depth accident studies routinely validate the crash severity methodologies applied as the vehicle fleet changes. This is achieved by analysing crash test data and using the appropriate residual crush damage and other inputs to AiDamage3 and checking the program- outputs with the known crash severity parameters. This procedure checks, at least in part, the default stiffness values in the data libraries and the reconstruction methods used.
Since 2008, the authors inspected fatal traffic accidents on the spot every year, with the cooperation of Toyota police station in Aichi pref. In the jurisdiction, numbers of fatal accidents were 18 in 2008, 12 in 2009, 14 accidents in 2010, and 16 in 2011. We here report the results of our analysis of information obtained by detailed inspection for those that occurred from 2008 to 2010. We focused on vehicle-to-pedestrian accidents, which accounted for about 45% of all accidents in 2008. Because many accidents occurred on residential roads not far from pedestrians" homes, it was revealed that the decrease of the collision speed by traffic calming such as humps and zone speed management, was highly effective. On the other hand, pedestrian detection technologies seemed to be also effective as a countermeasure on vehicle side. Every pedestrian position against a vehicle was clarified and TTC (Time to Collision) was calculated provisionally. Pedestrian accidents in intersections were also examined. Among the intersection pedestrian accidents within the jurisdiction, compared with the national average in Japan, the ratio of intersections without a signal and the ratio without a pedestrian crossing were high. According to the comparison of the Japanese traffic accident patterns between 2001 and 2008, pedestrian accidents during turning right and turning left did not decrease much. For elderly drivers, these accidents occurred very often. Finally, single vehicle accidents were analysed with the accident pattern analysis methods used above. There were high numbers of single vehicle accidents against object on single roads. Although fatal accidents against guardrails decreased, the numbers of fatal accidents against a utility pole and a sign pole were nearly constant. As for the impact with narrow width objects such as utility poles, the fatality rate was very high, and countermeasures of both road infrastructure and vehicles seem to be effective.
Stellungnahme zu einer Ausdehnung der Schutzhelmtragepflicht auf Moped/Mokick- und Mofabenutzer
(1977)
Im Hinblick auf die Unfallentwicklung bei motorisierten Zweiradfahrern wurde eine Untersuchung zur Ausdehnung der Verpflichtung, einen Schutzhelm zu tragen, auf Moped/Mokick- und Mofafahrer durchgeführt. Die Unfallschwere bei Außerortsunfällen ist hervorzuheben. Dabei handelt es sich überwiegend um Kopfverletzungen. Die Schutzwirkung von Helmen wird generell positiv eingeschätzt. Auf 1976 bezogen hätten bei Helmtragepflicht und 100 % Tragequote vermutlich rund 140 Tote, 2200 Schwerverletzte und 4400 Leichtverletzte eingespart werden können. Es wird empfohlen, die Helmtragepflicht zwingend vorzuschreiben. Nach den bisherigen Erfahrungen würde die Helmtragepflicht ohne Bußgeldbewehrung nicht auf die optimale Größenordnung angehoben werden können. Schutzhelme für motorisierte Zweiradfahrer sollten mindestens der DIN 4848 (1970) "Kraftfahrer-Schutzhelme" entsprechen, auch wenn die DIN 4848 noch nicht voll alle Forderungen an Schutzhelme abdeckt. Die Helmtragepflicht sollte so schnell wie möglich eingeführt werden. Die Einführung der Helmtragepflicht ist besonders auch unter gesamtwirtschaftlichen Gesichtspunkten sinnvoll.