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Road authorities, freight, and logistic industries face a multitude of challenges in a world changing at an ever growing pace. While globalization, changes in technology, demography, and traffic, for instance, have received much attention over the bygone decades, climate change has not been treated with equal care until recently. However, since it has been recognized that climate change jeopardizes many business areas in transport, freight, and logistics, research programs investigating future threats have been initiated. One of these programs is the Conference of European Directors of Roads (CEDR) Transnational Research Programme (TRP), which emerged about a decade ago from a cooperation between European National Road Authorities and the EU. This paper presents findings of a CEDR project called CliPDaR, which has been designed to answer questions from road authorities concerning climate-driven future threats to transport infrastructure. Pertaining results are based on two potential future socio-economic pathways of mankind (one strongly economically oriented "A2" and one more balanced scenario "A1B"), which are used to drive global climate models (GCMs) producing global and continental scale climate change projections. In order to achieve climate change projections, which are valid on regional scales, GCM projections are downscaled by regional climate models. Results shown here originate from research questions raised by European Road Authorities. They refer to future occurrence frequencies of severely cold winter seasons in Fennoscandia, to particularly hot summer seasons in the Iberian Peninsula and to changes in extreme weather phenomena triggering landslides and rutting in Central Europe. Future occurrence frequencies of extreme winter and summer conditions are investigated by empirical orthogonal function analyses of GCM projections driven with by A2 and A1B pathways. The analysis of future weather phenomena triggering landslides and rutting events requires downscaled climate change projections. Hence, corresponding results are based on an ensemble of RCM projections, which was available for the A1B scenario. All analyzed risks to transport infrastructure are found to increase over the decades ahead with accelerating pace towards the end of this century. Mean Fennoscandian winter temperatures by the end of this century may match conditions of rather warm winter season experienced in the past and particularly warm future winter temperatures have not been observed so far. This applies in an even more pronounced manner to summer seasons in the Iberian Peninsula. Occurrence frequencies of extreme climate phenomena triggering landslides and rutting events in Central Europe are also projected to rise. Results show spatially differentiated patterns and indicate accelerated rates of increases.
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).
In this study, we compared the injury severity of occupants according to the seating position and the crashing direction in motor vehicle accidents. In the driver's point of view, it was separated the seating position as "Near-side" and "Far-side". The study subjects were targeted by people who visited 4 regional emergency centers following motor vehicle accidents. Real-world investigation was performed by direct and indirect methods after patient- consent. The information of the damaged vehicle was informed by Collision Deformation Classification (CDC) code and the information of the injury of patients was informed by using the Abbreviated Injury Score (AIS) and Injury Severity Score (ISS). When the column 3 in CDC code was P, damaged at the middle part of lateral side, the average point of AIS 3 was 1.91-±1.72 in near-side and 1.02-±1.31 in far-side (p<0.01). The average point of maximum AIS (MAIS) was 2.78-±1.39 in near-side and 2.02-±1.11 in far-side (p<0.01). The average point of ISS was 15.74-±14.71 in near-side and 8.11-±8.39 in far-side (p<0.01). Also, when the column 3 in CDC code was D, damaged at the whole part of lateral side, it was significant that the average point of AIS 3 and MAIS in near-side was bigger than in far-side (p=0.02).
For the determination of the road surface roughness common methods have been established, like Skid Resistance Tester (SRT) or the Sideway-force Coefficient Routine Investigation Machine (SCRIM). Both methods are used to measure a comparable and reliable maximum friction potential value and to assess the quality of the road surface. However, the comparison of the measurements under real conditions and the results of measurements with SRT and SCRIM showed only minor correlations. The paper shows the comparison between these standardised methods and real vehicle braking tests and discusses the results.
The levels of continuous vehicle automation have become common knowledge. They facilitate overall understanding of the issue. Yet, continuous vehicle automation described therein does not cover "automated driving" as a whole: Functions intervening temporarily in accident-prone situations can obviously not be classified by means of continuous levels. Continuous automation describes the shift in workload from purely human driven vehicles to full automation. Duties of the driver are assigned to the machine as automation levels rise. Emergency braking, e.g., is obviously discontinuous and intensive automation. It cannot be classified under this regime. The resulting absence of visibility of these important functions cannot satisfy " especially in the light of effect they take on traffic safety. Therefore, in order to reach a full picture of vehicle automation, a comprehensive approach is proposed that can map out different characteristics as "Principle of Operation" at top level. On this basis informing and warning functions as well as functions intervening only temporarily in near-accident situations can be described. To reach a complete picture, levels for the discontinuous, temporarily intervening functions are proposed " meant to be the counterpart of the continuous levels already in place. This results in a detailed and independent classification for accident-prone situations. This finally provides for the visibility these important functions deserve.
The incidence of side impacts was investigated from GIDAS data. Both vehicle-fixed object and vehicle-vehicle collisions were analysed as these are enclosed within the consumer testing program. Vehicle-fixed object collisions were stratified according to ESC availability. Results indicated that vehicles equipped with ESC rarely have pure-lateral impacts. An increase in oblique collisions was seen for the vehicles with ESC whereby most vehicle were driving in left curves. The analysis of vehicle-vehicle collisions developed injury risk curves were developed at the AIS3+ injury severity for the vehicle-vehicle side impacts. Results suggested that greatest injury risk occurred when a Pre Euro NCAP vehicle was struck by a Post Euro-NCAP vehicle. The remaining curves did not show different behaviour, indicating that stiffness increased have been equally combated. This was attributable to the few Post Euro-NCAP vehicles that had a deployed curtain airbag available in the sample. The integration of Euro NCAP testing has shown to improve vehicle crashworthiness for pole collisions, as those vehicles with ESC rarely incur lateral impacts.
Um die Auswirkungen des demografischen Wandels auf den Straßenbetriebsdienst zu analysieren, wurde in der Zeit von Juli 2013 bis Februar 2014 eine Altersstrukturanalyse, eine Tätigkeitsbeschreibung und eine Mitarbeiterbefragung durchgeführt. Die Altersstrukturanalyse zeigte, dass in der Mehrzahl der Bundesländer eine ungünstige Altersverteilung vorliegt, d.h. ein Großteil der Belegschaft ist aktuell in der Altersklasse der über 40-Jährigen. Das bedeutet, dass die Tätigkeiten des Straßenbetriebsdienst in 10 Jahren überwiegend von Mitarbeitern im Alter über 50 bewältigt werden muss, sollte sich an der Altersstruktur nichts ändern. Bei der Tätigkeitsbeschreibung wurde deutlich, dass als Folge der meist jahrelangen belastenden Arbeitsbedingungen mit erheblichen physischen und psychischen Einschränkungen der Mitarbeiter zu rechnen ist, die somit die schwierigen Tätigkeiten im Straßenbetriebsdienst kaum noch bewältigen können. Bei der Mitarbeiterbefragung zeigte sich, dass die Straßenwärter im Großen und Ganzen mit ihrer Tätigkeit zufrieden sind, das Ende ihrer Erwerbslaufbahn aber durchaus kritisch sehen. Es wurde deutlich, dass die Befragten ihren Beruf mögen und ihn gerne und lange ausüben möchten. Dafür wünschen sie sich neben besserer technischer Ausstattung mehr Anerkennung für ihre Tätigkeit. Diese Ergebnisse weisen auf einen Handlungsbedarf in den Bereichen Gesundheitsförderung, Arbeitsorganisation und Personalmarketing auf. Expertenbefragungen in der Zeit von Juli 2014 bis Oktober 2014 zeigten, dass in einigen Bundesländern bereits positive Ansätze in diesen Handlungsfeldern vorhanden sind, die weiter entwickelt, gestärkt und koordiniert werden sollten. Präventive Maßnahmen sollten ergriffen werden, um die Gesundheit der vorhandenen Mitarbeiter möglichst lange zu erhalten. Auch durch eine alternskritische Organisation und Gestaltung der Arbeit könnte eine Entlastung der Mitarbeiter erfolgen. Maßnahmen des Personalmarketing sind erforderlich, um den künftigen Personalbedarf zu decken.
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.
Unter dem Begriff "Intelligente Brücke" erfolgt in einem Forschungscluster der Bundesanstalt für Straßenwesen die Entwicklung eines adaptiven Systems zur kontinuierlichen Bereitstellung relevanter Informationen für eine ganzheitliche Zustandsbewertung durch den Einsatz von geeigneter Sensorik in Verbindung mit Analyse- und Bewertungsverfahren. Hierdurch werden online Hinweise auf zu erwartende Schädigungen und Zustandsänderungen ermöglicht. Im Rahmen des digitalen Testfelds Autobahn werden ausgewählte Entwicklungen "Einwirkungsüberwachung", "Instrumentierte Fahrbahnübergänge und Lager" sowie "Sensornetze" an einer Spannbetonbrücke im Autobahnkreuz Nürnberg umfänglich vorgestellt und damit bundesweit zugänglich gemacht. Das Gesamtsystem besteht aus den Komponenten eines Informationssystems zur Analyse und Bewertung von Messdaten instrumentierter Bauteile. Die dabei durchzuführenden Untersuchungen beziehen sich auf die fortlaufende Aktualisierung des objektbezogenen Lastmodells und Analysen zur Restlebensdauer der Brücke sowie der untersuchten Bauteile. Die erfassten und aufbereiteten Informationen werden der zuständigen Straßenbauverwaltung online zur Verfügung gestellt. Das System wird im Rahmen eines fünfjährigen Untersuchungsprogramms betrieben, analysiert und weiterentwickelt.
Driver distraction
(2017)
This report for the Institute of Advanced Motorists (IAM) summarises recent research and knowledge from scientific studies about distracted driving. The report defines what it means to be "distracted" when driving, discusses the impact of distraction on driver behaviour and safety, and what can be done to reduce distracted driving. The focus of distraction discussed here relates to how drivers engage with technology when driving. The report begins with a background to driver distraction, followed by discussion about what is actually meant by driver distraction. It is then considered why humans cannot successfully do two things at the same time, particularly within the context of driving. The subsequent section summarises the scientific research findings to date with regard to driver distraction and technology, and how this affects different types of road user. Recommendations for how driver distraction can be mitigated in the real world and a summary conclude the report. Responses to common questions raised by drivers are presented in Appendix A.