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Bewertung der strukturellen Substanz für die systematische Erhaltungsplanung von Betonfahrbahndecken
(2017)
"Mobilität ist die zentrale Vorrausetzung für wirtschaftliches Wachstum, Beschäftigung und Teilhabe des Einzelnen am gesellschaftlichen Leben". Dieser Leitsatz des BMVI setzt eine intakte und funktionierende Infrastruktur voraus. Im Kontext mit dem Investitionshochlauf in den nächsten Jahren ist das Bundesfernstraßennetz insbesondere ein netzbezogenes systematisches Vorgehen im Rahmen der Baulichen Erhaltung von Relevanz. Bei der Planung von Erneuerungsmaßnahmen ist dabei die Kenntnis über den Zustand der strukturellen Substanz und deren langfristige Entwicklung von zentraler Bedeutung. Nachfolgend wird ein Verfahren vorgestellt, das die mechanisch und statisch abgesicherte Bewertung und Prognose der strukturellen Substanz von Betonfahrbahndecken ermöglicht. Zudem werden die Anwendung und das Vorgehen anhand eines Praxisbeispiels aufgezeigt.
Causation of traffic accidents with children from the perspective of all involved participants
(2017)
In the year 2014 about 2,800 children between zero and 14 years got injured due to traffic accidents in Austria. More than 50% were taking part in traffic as active road users like cyclists or pedestrians. Within this study 46 real world traffic accidents between vehicles and children as pedestrians were analysed. In 39 cases, car drivers hit the crossing children. In the other cases, the collision opponents were busses, trucks or motorcycles. Most of the children got hit while crossing a road at urban sites. By analysing the traffic accidents from the perspectives of all involved participants, vehicle drivers and injured children, it is possible to identify factors for each participant, which led to the accident and factors that contributed the accident. The main task is to find patterns in the behaviour of crash victims (children and driver) before the collision. One important fact is that in more than 50% of the analysed cases sight obstructions were an important contributing factor for both, the driver and the child. From drivers view situations in which the child moved unexpected into the driven road lane were often found. For the injured child, factors like: no attention to the road traffic or no sufficient traffic observation were found to be relevant. Further it- possible to sensitise children and adults to possible source of critical traffic situations according to the findings of this study.
Aufgrund der Wichtigkeit individueller Mobilität nutzen viele Menschen heutzutage ein Auto zur Fortbewegung. Hierbei scheint es normal zu sein, neben dem Fahren zusätzliche, nicht fahrbezogene Aktivitäten auszuüben. Obwohl die Fahrzeugführung an sich bereits anspruchsvoll ist und die menschlichen Kognitionsressourcen begrenzt sind, geschehen relativ selten schwere Unfälle. Empirische Studien des fahrergesteuerten Fahrens deuten darauf hin, dass Fahrer Strategien besitzen, die es ihnen ermöglichen, auch im Mehrfachaufgabenkontext eine sichere Fahrleistung zu garantieren: Sie scheinen einen Fahrleistungszielwert zu besitzen, den sie im kontinuierlichen Abgleich mit der aktuellen Fahrleistung versuchen zu erreichen. Darüber hinaus scheinen Fahrer die Bearbeitung nicht fahrbezogener Aufgaben zu reduzieren, sobald sie sich einer kritischen Fahrsituation nähern. In den vergangenen Jahren machte die Entwicklung automatisierter Fahrfunktionen deutliche Fortschritte. Dies führte zu tiefgreifenden Veränderungen der Fahrer-Fahrzeug-Interaktion, da Fahrer im Normalverkehr des automatisierten Fahrens (SAE Level 3) nicht mehr die Verantwortung für die Fahrzeugführung tragen und es ihnen freisteht, sich mit nicht fahrbezogenen Aufgaben zu beschäftigen. Hiervon ausgehend stellt sich die Frage, ob und wenn ja, welche Rolle die Fahrerstrategien im Kontext des automatisierten Fahrens spielen. Das aktuelle Forschungsvorhaben beschäftigt sich mit dieser Thematik: Basierend auf der Idee eines Fahrleistungszielwerts wurden Grenzwerte akzeptierter Fahrleistungsbereiche in Abhängigkeit verschiedener Personen- und Situationsfaktoren bestimmt. Des Weiteren wurde untersucht, inwiefern Fahrern ihre Strategien auch in Übernahmesituationen des automatisierten Fahrens in Abhängigkeit verschiedener Systemkonfigurationen zur Verfügung stehen. Abschließend wurden die Erkenntnisse dieser beiden Schritte zur Ableitung von Gestaltungsempfehlungen für zukünftige automatisierte Systeme genutzt.
Bus or heavy vehicle passenger accidents are rare events, compared with car accidents, but sometimes leads to a large number of victims especially in rollover crash scenarios. Two accidents occurred in Portugal in 2007 and 2013 in which 28 people died and more than 50 are injured, shown the importance of the investigation of such accidents. For the investigation of these accidents multidisciplinary teams are constituted with engineers and police officers. All the factors involved are taken into consideration including road design, traffic signs, maintenance and hardware, human factors, and vehicle factors. In this work a methodology to an accurate collection of the data is proposed. From the information collected the accident is reconstructed using the PC-CrashTM software. From this all the contribution factors are determined and recommendations to mitigate these crashes are listed. These two accidents are rollover accidents and the analysis of the injuries and its correlation with the use of retention systems is very important. From the medical data and with the dynamics of the accident determined simulations of the occupants with biomechanical models are carried out in order to evaluate the effect of the retention systems in the injuries. This analysis is based on injury criteria (such as Abbreviated Injury Score (AIS) or Injury Severity Scale (ISS)). With this it is possible to determine if the seat belt was worn or not.
Powered Two Wheeler (Motorcycle) crashes are overrepresented in EU, England, and United States casualty statistics for both fatal and serious injuries. While regional geographic differences are evident for motorcycle size, type, and engine displacement, the casualty statistics consistently indicate significantly higher injury rates for all motorcycle riders when compared to car occupants. Accident analysis and reconstruction of these motorcycle crashes is a necessary process to gain further understanding of potential injury mitigation strategies. This paper focuses on the analysis of the rider post impact trajectory in the immediate moments following a crash. The rider and motorcycle, while loosely coupled by seating position leading up to a crash, quickly decouple as the crash forces develop. As a result, the rider moves relative to the motorcycle and relative to the collision partner. This movement, or trajectory, is primarily influenced by the type and configuration of the impact, the type and configuration of the motorcycle and collision partner, and the speeds involved. Understanding the rider's post impact trajectory will assist in the development of injury mitigation strategies. Both the free flight trajectory of the rider and the rider's trajectory as influenced by interaction with the motorcycle and collision partner are examined. Rider trajectories in full scale crash testing and real world motorcycle crashes are both studied and presented. The resulting physical evidence that can be observed by an accident analyst is discussed. The application of projectile motion physics is analyzed and the necessary input parameters, such as initial launch angle, are studied. This study will assist in understanding the post-impact dynamics of a motorcyclist, and will provide useful information to analysts evaluating real world crashes.
This work describes the results of the experimental activity, illustrating the driving behavior observed in different conditions, relating them to the different methods of ADAS intervention and comparing the driver behavior without ADAS. In the present study, driver behavior was studied in road accidents involving elderly pedestrians, with different ADAS HMIs, as a base to develop a driver model in near missing pedestrian accidents. A literature research was conducted with the aim of finding out the main influencing factors, including environment, boundary conditions, configuration of impact, pedestrian and driver information, when pedestrian fatalities occur and an analysis of frequent road accidents was conducted to get more detailed information about the driver- behavior. In order to obtain more detailed information about pedestrian accidents, real road accidents were reconstructed with multibody simulations on PC-Crash and, by the comparison between literature findings and reconstructions, a generic accident scenario was defined. The generic accident scenario was implemented on the full scale dynamic driving simulator in use at the Laboratory for Safety and Traffic Accident Analysis (LaSIS, University of Florence, Italy) in order to analyse the driving behaviors of volunteers, also considering the influence of ADAS devices. Forty-five young volunteers were enrolled for this study, resulting in forty valid tests on different testing scenarios. Two different scenarios consisted in driving with or without ADAS in the vehicle. Different kinds of ADAS, acoustic and optical, with different time of intervention were tested in order to study the different reactions of the driver. The tests showed some interesting differences between driver's behavior when approaching the critical situation. Drivers with ADAS reacted earlier, but more slowly, depending also on the type of alarm, and often with double reaction when braking. In fact, the results of the activity showed that with ADAS intervention the time to collision (TTC) increases, but the reaction time and braking modality change: a) there is a sort of "latency" time between the accelerator pedal release and the brake pressure; b) the brake pressure is initially less intense. So the driver only partially takes advance from the TTC increase. These differences were valued not only qualitatively, but quantitatively as well. This work revealed to be useful to improve the knowledge of drivers" behavior, in order to realize a driver model that can be implemented to help attaining and assessing higher levels of automation through new technology.
For more than a decade, ADAC accident researchers have analysed road accidents with severe injuries, recording some 20,000 accidents. An important task in accident research is to determine the causative factors of road accidents. Apart from vehicle engineering and human factors, accident research also focuses on infrastructural and environmental aspects. To find out what accident scenarios are the most common in ADAC accident research and what driver assistance systems can prevent them, our first task was to conduct a detailed accident analysis. Using CarMaker, we performed a realistic simulation of accident scenarios, including crashes, with varying parameters. To begin with, we made an initial selection of driver assistance systems in order to determine those with the greatest accident prevention potential. One important finding of this study is that the safety potential of the individual driver assistance systems can actually be examined. It also turned out that active safety offers even much more potential for development and innovation than passive safety. At the same time, testing becomes more demanding, too, as new systems keep entering the market, many of them differing in functional details. ADAC will continue to test all driver assistance systems as realistically as possible so as to be able to provide advice to car buyers. Therefore, it will be essential to develop and improve test conditions and criteria.
Measuring and characterizing airborne particulate matter (PM) is an important research area because PM can lead to impacts on health and to visibility reduction, material damage and groundwater pollution. In regard to road dust, suspension and re-suspension and the contribution of non-exhaust PM to total traffic emissions are expected to increase as a result of predicted climate scenarios. European environmental regulations have been enforced to reduce exhaust particle emissions from road traffic, but little attention has been paid to reducing non-exhaust coarse particle emissions due to traffic. Therefore, a monitoring program for coarse PM has been initiated in early 2013 to assess the predicted increase in the abundance of non-exhaust particles. Particle sampling was performed with the passive-sampler technique Sigma-2. The subsequent single-particle analysis allows for characterization of individual particles, determination of PM size distribution, and calculation of PM mass concentrations. Two motorways n ear Cologne (Koeln), Germany were selected as sampling sites, and the experimental setup in the field was realized with a so-called twin-site method. The present study reports single-particle analysis data for samples collected between May 31, 2013 and May 30, 2014. Coarse PM, generated through multi-source mechanisms, consists of, e.g., tire-wear, soot aggregates, and mineral dust. The highest mass concentration occurs at both motorways in spring, and the observed PM mainly contains traffic-abrasion particles. The field measurements show that the minimum PM concentration was found in the 5 to 12-°C temperature range, whereas the maximum concentration was observed in both the "5 to 5-°C and the 12 to 24-°C ranges, in agreement with previous laboratory measurements. Correlation between super-coarse (d p 10"80 μm, geometric equivalent diameter) PM concentration and precipitation displays a significant increase in concentration with decreasing number of precipitation events (dry weather periods).
The Decision Support System (DSS) is one of the key objectives of the European co-funded research project SafetyCube in order to better support evidence-based policy making. Results will be assembled in the form of a DSS that will present for each suggested road safety measure: details of risk factor tackled, measure, best estimate of casualty reduction effectiveness, cost-benefit evaluation and analytic background. The development of the DSS presents a great potential to further support decision making at local, regional, national and international level, aiming to fill in the current gap of comparable measures effectiveness evaluation. In order to provide policy-makers and industry with comprehensive and well-structured information about measures, it is essential that a systems approach is used to ensure the links between risk factors and all relevant safety measures are made fully visible. The DSS is intended to become a major source of information for industry, policy-makers and the wider road safety community.
Im Rahmen dieser Begleitstudie zum Feldversuch mit Lang-Lkw wurde untersucht, wie die technischen Anforderungen der Verordnung über Ausnahmen von straßenverkehrsrechtlichen Vorschriften für Fahrzeuge und Fahrzeugkombinationen mit Überlänge (LKWÜberlStVAusnV) von teilnehmenden Speditionen umgesetzt wurden. Die Studie fußt auf den der BASt von den am Feldversuch teilnehmenden Speditionen zur Verfügung gestellten Daten sowie Fahrzeugbegutachtungen. Sie bildet den Stand vom 15.07.2013 mit 43 Lang-Lkw von 23 Speditionen ab. 31 Lang-Lkw vom Typ 3 bilden hierbei den größten Anteil. Alternative Umsetzungsmöglichkeiten technischer Anforderungen wurden speziell bei Achslastüberwachungssystemen und Kamera-Monitor-Systemen am Heck betrachtet. Die Achslastüberwachungssysteme weisen keine Spezifikationen hinsichtlich ihrer Genauigkeit auf. Probemessungen zeigten jedoch eine hinreichende Genauigkeit, um etwaige Überladungszustände transparent zu machen. Mit den Kamera-Monitor-Systemen können Objekte hinter dem Fahrzeug erkannt werden, eignen sich jedoch je nach Kameraposition eher zur Beobachtung des rückwaertigen Verkehrs oder als Rückfahrhilfe. Durch Simulationen und Fahrversuche wurde das Kurvenlaufverhalten der Fahrzeuge entsprechend -§ 32d der StVZO ("BO-Kraftkreis") überprüft. Es zeigte sich hierbei, dass die Prüfvorschriften nicht hinreichend genau definiert sind und sich speziell für Lang-Lkw je nach Auslegung unterschiedliche Werte ergeben können. Die Studie zeigt weiter, dass Lang-Lkw gegenüber Lkw herkömmlicher Bauart bei einem Gesamtgewicht von 40 t einen kürzeren Bremsweg aufweisen und keine erhöhte Sogwirkung auf Zweiräder ausüben. Darüber hinaus werden Unterschiede in der Fahrdynamik durch Simulationen aufgeschlüsselt, wodurch auf weiteren Forschungsbedarf hingewiesen wird. In Fragebögen wurde die Wirksamkeit der hinteren Beschilderung der Lang-Lkw untersucht. Die Befragung zeigte eine höhere Wirksamkeit von Piktogrammen, welche gegenüber Aufschriften zu bevorzugen sind. Die Auswertung von Flottentelematikdaten ergab eine CO2-Reduktion eines Lang-Lkw von rund 15 % gegenüber Lkw herkömmlicher Bauart, wenn beide Fahrzeuge die gleiche Güterart transportieren.