Filtern
Erscheinungsjahr
Dokumenttyp
- Konferenzveröffentlichung (637) (entfernen)
Schlagworte
- Conference (386)
- Konferenz (382)
- Germany (212)
- Deutschland (209)
- Unfall (188)
- Accident (187)
- Safety (123)
- Sicherheit (122)
- Injury (117)
- Verletzung (117)
Institut
In recent years considerable progress in active and passive safety of road vehicles has been made. The road traffic of today is much safer than in the past. A current vehicle has a lot more safety elements resulting in an improved inner and outer technique. In most European countries the number of fatalities is decreasing despite growing traffic and road usage. Nevertheless, the number of casualties in road traffic accidents is high enough, thus more progress is needed if the number of fatalities is to be reduced by 50%, as postulated by the European Commission for the year 2010. In order to develop countermeasures and further possibilities for injury prevention, it is increasingly important to have accident data available, supplying results quickly and giving the best overview across Europe. In-Depth-Data Sampling Procedures have a huge historical development, starting in the 60ies by the car manufactures, continued during the 70ies mostly by some universities mainly in England, Sweden, France and Germany, today a net of in-depth-investigation teams are working across Europe and around the world.One of the oldest teams is located at the Hannover Medical School, founded in 1973 by the German Government on behalf of the Federal Highway Research Institute Bast. It was the only team worldwide that was equipped with blue light emergency cars, working on scene in time so directly after the event and working continuously during the years, collecting 20 thousand accidents within 30 years period. Since 1999 the order is carried out in cooperation with the German car industry, which is interested and has benefit on the data too. On the basis of the new data collection, so called GIDAS (German In-Depth Accident Study), that has been run at the Technical University Dresden and the Medical University Hannover), a special tool for In-Depth-Accident Analysis was founded. It is the task of this conference to build a platform for such research based on In-Depth-Investigation. The conference is specially aimed at the area of accident data analysis in order to contribute to the harmonization of different investigation methods and accumulation of different results that does exist for different countries worldwide. Up to now no special conference did exist to deal with accident data only following in the discussion for an improvement in traffic and vehicle safety. ESAR - expert symposium on accident research - should be a step forward. This first international conference is being organized by the Accident Research Unit at the Medical University Hannover jointly with the German Federal Highway Research Institute Bast and the Research Association of German Car Manufacturers FAT. The conference should be a platform for an interdisciplinary exchange of information based on the different presentations from participants around the world.
The second ESAR Conference took place at the Medical University Hannover. This year conference presents the current state of affairs of relevant research activities in the field of in-depth investigations. The first conference on ESAR (Expert Symposium on Accident Research) was established in 2004. It is planned to hold ESAR every two years. Hannover seems to be the right place for this conference concerning the fact that the first in-depth research team was found here in the year 1973 and comprehensive studies on accident analysis were spread out from here around the world continuously. This year conference topped all expectations in terms of the numbers of participants, in the variety of papers and the interdisciplinary of presenters from medical, psychological and engineering background. More than 100 delegates from all over the world, that means 13 different countries and from 4 different continents, came to Hannover, presented their results of accident investigation and discussed countermeasures for accident prevention and injury reduction. ESAR should be a platform for exchange of knowledge to find an optimized way for increase of traffic and vehicle safety by in-depth investigation and methodology. ESAR as international conference should be a platform for consideration of all nations round the world. This seems to be very important for the current situation, having high safety in the high industrial countries of Europe, US and Australia, but low safety and high injury risk in Asia and Africa.
In September 2004 the first international symposium called ESAR (Expert Symposium on Accident Research) was carried out at the University of Hannover (Germany). The idea for such international conference was to bring together experts from the fields of accident investigation teams worldwide to present their results for a common audience of people from government, industry and other universities. The first conference was a really sufficient one and followed by the second symposium also at the Hannover Medical School two years later in 2006. This two year rhythm was now continued with the third conference in Hannover again in 2008. It is planned to carry out ESAR every two years also in the future. ESAR is a scientific colloquium and can be seen as a platform for exchange of information on accident research issues based on methodologies of investigation, injury mechanisms and injury assessment, accident causation and other issues of statistical accident data analysis. Representatives from authorities as well as from medical and technical institutions come together to discuss new research issues and exchange experiences on accident prevention and the complex field of accident reconstruction. Special focus was given to the target the European Union set for itself in 2000 which stipulates that within 10 years the number of person killed in road traffic accidents must be cut in half. To reach this goal, optimized measures, comprehensive research and analysis are necessary. A key hurdle comes from the European Union extension to 27 member states, each featuring different levels of traffic safety standards and different accident scenarios. Existing results from long term research projects in Europe, the USA, Australia and Japan including analyses of infrastructure, population, vehicle fleet and driver behaviour offer an excellent basis for understanding and improving countermeasures and research support needs in underdeveloped countries. ESAR's goal is to bring together researchers from all parts of the world, who will report on their methods and recommendations to improve traffic safety based on "In-Depth-Investigations" of real world accidents. These In-depth-investigations of accidents require thorough documentation and an accident data analysis on multidisciplinary levels which must be carried out immediately after it occurs. ESAR presents scientists the opportunity to present their studies on a common basis of research level.
Am 42. Erfahrungsaustausch über Erdarbeiten im Straßenbau (EAT) am 5. und 6. Mai 2010 nahmen neben Vertretern des Bundesministeriums für Verkehr, Bau- und Stadtentwicklung und der Straßenbaubehörden der Länder auch Vertreter der Bundesanstalt für Wasserbau, der Deutschen Bahn AG und der DEGES teil. Der Erfahrungsaustausch dient dazu, Erfahrungen mit neuen Bauweisen und der Anwendung neuer Regelwerke und Prüfverfahren mitzuteilen und zu diskutieren. Der 42. EAT hatte vier verschiedene Themen-Schwerpunkte. Zum Einen "Regelwerke und Normung", es wurde die Arbeitsgruppe des CEN und deren Aufgaben bei der europäischen Normung "Erdarbeiten" vorgestellt, über die Qualitätssicherung von Geokunststoffen informiert und außerdem Neuerungen in den RAP Stra 2010 und der aktuelle Überarbeitungsstand der Richtlinien für die Straßenentwässerung (ZTV Ew, RiStWag und RAS-Ew) erläutert. Die Erfahrungsberichte gewährten Einblicke über neue Bauverfahren und Baustoffe. Es wurde der Vortrag vom 41. EAT über die Anwendung von Glasschaumgranulat als Leichtschüttung mit 2-jähriger Erfahrung fortgeführt. Ferner wurde über die Verbesserung des Verformungsverhaltens organischer Böden am Beispiel der Querung eines Moorgebietes in Brandenburg und der Überwindung eines Todeisloches beim Bau der A7 im Allgäu berichtet. Ebenfalls wurden die Vorteile und erforderlichen Einschränkungen (Risiken) der Beobachtungsmethode bei der Sicherung standsicherheitsgefährdeter Einschnittsböschungen erläutert. Ein weiteres Thema waren die Auswirkungen des Klimawandels auf die Straßeninfrastruktur. In verschiedenen Szenarien wurde über den Klimawandel mit Relevanz für die Straße und über Risiken von Hang- und Böschungsrutschungen durch die Zunahme von Extremwetterereignissen informiert. An drei Fallbeispielen in Baden Württemberg, Rheinland-Pfalz und Niedersachsen wurde über Böschungsrutschungen und deren Sanierungsmaßnahmen berichtet. Den letzten Schwerpunkt bildeten die Bauverträge mit funktionalen Anforderungen. Es wurde über den Funktionsbauvertrag im Bundesfernstraßenbau, die Vorstellung der ZTV-Funktion E an Hand der BAB A6 bei Nürnberg und über die ZTV Funktion Ew berichtet. Die Fachexkursion am 6. Mai 2010 führte zunächst zur Verkehrs- und Betriebszentrale Nordbayern, die eindrucksvoll über ihre Aufgabengebiete, einschließlich des verkehrstelematischen, betriebs- und tunneltechnischen Systems informierte. Anschließend wurde über weitere Details des sechsstreifigen Ausbaus der BAB A6 zwischen der AS Roth und dem AK Nürnberg-Süd informiert. Im Anschluss erfolgten unter fachkundiger Führung die Besichtigung der Erdbaumaßnahmen an der Main-Donau-Kanalbrücke und der Rückbau des Lärmschutzwalls Kornburg inklusive der Erläuterungen der unvorhergesehenen Probleme bei der Aufbereitung des alten Lärmschutzwalls.
Im Jahr 2004 fand an der Medizinischen Hochschule Hannover die erste ESAR-Konferenz (Expert Symposium on Accident Research) statt. Die Idee einer internationalen Konferenz war aus der Notwendigkeit entstanden, diejenigen Experten zusammen zu bringen, die weltweit tätig sind und Verkehrsunfälle wissenschaftlich analysieren, um ihre Ergebnisse gemeinsam zu diskutieren und einem Zielpublikum von Behördenvertretern, Entwicklungsingenieuren der Automobilindustrie und anderen Wissenschaftlern darzubringen. Die durch Professor Otte initiierte und nun zum vierten Male organisierte Konferenz fand eine breite Akzeptanz und ist mittlerweile Bestandteil einer Konferenzlandschaft mit Zielvorträgen von der Fahrzeugsicherheit bis hin zur Verletzungsanalyse und den Unfallursachen. ESAR kann als wissenschaftliches Kolloquium und Plattform für einen Informationsaustausch der Unfallforscher angesehen werden, die sich speziell mit Methoden der Unfalluntersuchung, mit Verletzungsmechanismen und der Bewertung von Verletzungen, Unfallursachen und anderen Bereichen der statistischen Unfalldatenanalyse befassen. Experten aus den Bereichen der Medizin, der Verkehrspsychologie und der Technik sowie Vertreter zuständiger Behörden kommen hier zusammen, um die Erfahrungen in der Unfallprävention und der Unfallrekonstruktion zu diskutieren und um der Forschung neue Felder zu eröffnen. Neben den Belangen der Europäischen Gemeinschaft werden auch die weltweit zu registrierenden hohen Verletztenzahlen berücksichtigt. Wissenschaftliche Vorträge aus aller Welt tragen dazu bei, geeignete Maßnahmen und Methoden zur Analyse und drastischen Verringerung der Zahl der bei Verkehrsunfällen Getöteten zu entwickeln. Die Zusammensetzung des Teilnehmerkreises dieser wie früherer ESAR-Konferenzen hat längst eine über Europa hinausgreifende Internationalitaet erreicht und bietet daher einen aufschlussreichen Überblick über die verschiedenen Standards bestehender Verkehrssicherheit und unterschiedlichen Unfallszenarien und über die Anforderungen an die Unfallanalysen. Die Ergebnisse langjähriger Forschungsarbeiten in Europa, USA, Australien und asiatischen Ländern beinhalten unterschiedliche infrastrukturelle Zusammenhänge und geben Erkenntnisse über Population, Fahrzeugbestand und Fahrereigenschaften. Derartige Informationen bilden eine exzellente Basis für abzuleitende Empfehlungen und Maßnahmen für die Erhöhung der Verkehrssicherheit international.
In 2012 the fifth ESAR conference (Expert Symposium on Accident Research) was held in Hannover. ESAR is an international convention of experts, who analyze traffic accidents all over the world and discuss their results in this context, conducted at the Medizinische Hochschule Hannover every 2 years. It connected representatives of public authorities, engineers in automotive development and scientists and offers a forum with particular emphasis on In-Depth-Analyses of accident statistics and accident analyses. Special focus is placed on research on the basis of so-called "In-Depth-Accident-Investigations" [data collections at the sites of the accidents], which are characterized by extensive documentations of the sites of the accidents, of the vehicles as well as of the injuries, encompassing several scientific fields. ESAR aims at a multi-disciplinary compilation of scientific results and at discussing them on an international, scientific level. It is thus a scientific colloquium and a platform for exchanging information for all accident researchers. Experiences in accident prevention as well as in the complex field of accident reconstruction are stated and new research fields are added. Existing results of long-term research work in Europe, the US, Australia and Japan include different infrastructural correlations and give findings on population, vehicle population and driver characteristics, which offer a basis for recommendations to be derived and measures for increasing road safety.
Der Allgemeine Deutsche Automobil-Club e.V. (ADAC) und die Bundesanstalt für Straßenwesen (BASt) veranstalteten am 13. Oktober 2006 in Baden-Baden das 6. Symposium "Sicher fahren in Europa". Die Fachvorträge befassten sich mit den Themenbereichen: Ansätze zu mehr Verkehrssicherheit, - Verbesserung der Fahrzeugsicherheit, - Besondere Zielgruppen. Die CD-ROM dokumentiert die Grußworte, die Referate und die Podiumsdiskussion.
In 2014 the sixth ESAR conference (Expert Symposium on Accident Research) was held in Hannover. ESAR is an international convention of experts, who analyze traffic accidents all over the world and discuss their results in this context, conducted at the Medizinische Hochschule Hannover every 2 years. It connected representatives of public authorities, engineers in automotive development and scientists and offers a forum with particular emphasis on In-Depth-Analyses of accident statistics and accident analyses. Special focus is placed on research on the basis of so-called "In-Depth-Accident-Investigations" [data collections at the sites of the accidents], which are characterized by extensive documentations of the sites of the accidents, of the vehicles as well as of the injuries, encompassing several scientific fields. ESAR aims at a multi-disciplinary compilation of scientific results and at discussing them on an international, scientific level. It is thus a scientific colloquium and a platform for exchanging information for all accident researchers. Experiences in accident prevention as well as in the complex field of accident reconstruction are stated and new research fields are added. Existing results of long-term research work in Europe, the US, Australia and Japan include different infrastructural correlations and give findings on population, vehicle population and driver characteristics, which offer a basis for recommendations to be derived and measures for increasing road safety.
Der Allgemeine Deutsche Automobil-Club e.V. (ADAC) und die Bundesanstalt für Straßenwesen (BASt) veranstalteten am 15. Oktober 2009 in Baden-Baden ihr 7. Symposium \"Sicher fahren in Europa\". Nach 1991, 1994, 1997, 2000, 2003 und zuletzt 2006 trafen sich auch dieses Mal wieder zahlreiche Fachleute aus Wissenschaft und Politik, Industrie, Wirtschaft und Verbänden aus dem In- und Ausland, trugen neue Forschungsergebnisse vor und erörterten aktuelle Ansätze zur Erhöhung der Verkehrssicherheit. Dabei ging es in den Referaten und Diskussionsbeiträgen und in den vier Workshops vor allem darum, die verkehrspolitischen Entwicklungen und Herausforderungen für die europäische Verkehrssicherheitsarbeit im Hinblick auf folgende Themen zu beleuchten: "Verkehrssicherheit Junger Fahrer", - Das "Auto der Zukunft", - "Demographischer Wandel", - "Landstraßensicherheit". Den Grundsatzreferaten folgten vertiefte Bearbeitungen in den Workshops. Die CD-ROM dokumentiert die Grußworte, Referate und Diskussionsbeiträge.
In 2016 the seventh ESAR conference (Expert Symposium on Accident Research) was held in Hannover. ESAR is an international convention of experts, who analyze traffic accidents all over the world and discuss their results in this context, conducted at the Medizinische Hochschule Hannover every 2 years. It connected representatives of public authorities, engineers in automotive development and scientists and offers a forum with particular emphasis on In-Depth-Analyses of accident statistics and accident analyses. Special focus is placed on research on the basis of so-called "In-Depth-Accident-Investigations" [data collections at the sites of the accidents], which are characterized by extensive documentations of the sites of the accidents, of the vehicles as well as of the injuries, encompassing several scientific fields. ESAR aims at a multi-disciplinary compilation of scientific results and at discussing them on an international, scientific level. It is thus a scientific colloquium and a platform for exchanging information for all accident researchers. Experiences in accident prevention as well as in the complex field of accident reconstruction are stated and new research fields are added. Existing results of long-term research work in Europe, the US, Australia and Japan include different infrastructural correlations and give findings on population, vehicle population and driver characteristics, which offer a basis for recommendations to be derived and measures for increasing road safety.
Seit mehreren größeren Brandereignissen in Straßentunneln um die Jahrtausendwende wurde sowohl im baulichen Brandschutz als auch in der sicherheitstechnischen Tunnelausstattung viel getan. Zahlreiche technische Neu- und Weiterentwicklungen haben seither Eingang in Bau, Ausstattung und Betrieb der Bauwerke gefunden. Im europäischen aber auch weltweiten Vergleich befinden sich die deutschen Straßentunnel auf einem sehr hohen Sicherheitsniveau. Dies ist auch erforderlich, da Deutschland als Transitland in Europa über ein hoch belastetes Straßennetz verfügt. Tunnel stellen neuralgische Punkte in diesem Netz dar. Daher gilt es hier für den Nutzer ein Optimum an Sicherheit zu gewährleisten, gleichzeitig aber auch den Verkehrsfluss so gering wie möglich durch Wartungs- bzw. Sperrzeiten der Tunnelröhren zu behindern. Mit diesem Tagungsband sollen die neuesten Erkenntnisse sowohl zur Verkehrssicherheit in Tunneln, als auch zur bautechnischen Sicherheit für die Verwendung in der alltäglichen Praxis nähergebracht werden. Nach einem allgemeinen Überblick zum Stand von aktuellen Bau-, Instandsetzungs- und Nachrüstungsmaßnahmen im deutschen Fernstraßentunnelnetz erfolgt die Vorstellung zweier Forschungsprojekte der BASt, dem europäischen Projekt ECOROADS, welches die Harmonisierung zwischen Sicherheitsanforderungen auf freier Strecke und Tunnel zum Inhalt hat, und dem BASt-eigenen Modelltunnel, in dem längsneigungsabhängige, modellmaßstäbliche Rauchausbreitungsuntersuchungen vorgenommen wurden. Im zweiten Themenbereich, der die Grundlagen für Planung und Bau fokussiert, wird auf die Fortschreibung des betriebstechnischen Regelwerks, die Entwicklung von Kostenansätzen für Straßentunnel sowie auf planerische Herausforderungen im Rahmen des Großprojektes Fehmarnbeltquerung eingegangen. Im Themenschwerpunkt Tunnelbetrieb werden neue Erkenntnisse zur Belüftung von Straßentunneln bei Stau und den damit verbundenen Auswirkungen auf die Risikoanalyse vorgestellt. Außerdem gibt es ein Update zum Stand der Umsetzung des Pilotprojektes Tunnelsimulator aus zwei Bundesländern. Im Rahmen der Beiträge zu Instandsetzung und Nachrüstung von Straßentunneln wird dem aktuellen Thema des Umgangs mit Chloridbelastungen von Tunnelinnenschalen nachgegangen, sowie den Besonderheiten bei der Nachrüstung mehrerer Bestandstunnelbauwerke der Stadt Köln mit Schwerpunkt auf dem Stadtautobahntunnel Kalk. An dieser Stelle sei allen Autoren gedankt, die zu dieser gelungenen Veranstaltung beigetragen haben.
Im europäischen aber auch weltweiten Vergleich befinden sich die deutschen Straßentunnel auf einem sehr hohen Sicherheitsniveau. Dies ist auch erforderlich, da Deutschland als Transitland in Eu-ropa über ein hoch belastetes Straßennetz verfügt. Tunnel stellen neuralgische Punkte in diesem Netz dar. Daher gilt es hier für den Nutzer ein Optimum an Sicherheit zu gewährleisten, gleichzeitig aber auch den Verkehrsfluss so gering wie möglich durch Wartungs- bzw. Sperrzeiten der Tunnelröhren zu behindern. Neben der Sicherheit und Verfügbarkeit wird erwartet, dass insbesondere auch die Themen Digitalisierung, Nachhaltigkeit und Wirtschaftlichkeit in der Zukunft den Tunnelbau- und Tunnelbetrieb (weiter) prägen werden.
Mit diesem Tagungsband sollen die neuesten Er-kenntnisse zu diesen Zukunftsthemen für die Ver-wendung in der alltäglichen Praxis nähergebracht werden.
Nach einem allgemeinen Überblick zum Stand von aktuellen Bau-, Instandsetzungs- und Nachrüs-tungsmaßnahmen im deutschen Fernstraßentunnelnetz wird im zweiten Themenblock, der den Be-trieb und die Erhaltung fokussiert, auf den Einsatz von BIM im Rahmen der Tunnelerhaltung sowie den Einfluss von Nutzungsdauern auf die Lebenszykluskosten von Tunneln eingegangen. Der Themenblock schließt mit der Vorstellung der geothermischen Nutzung von Bergwasser für einen nachhaltigen Betrieb am Grenztunnel Füssen.
Im Rahmen der Beiträge zum Themenblock „Erhöhung der Verfügbarkeit“, werden Konzepte vorge-stellt, die es ermöglichen die Verfügbarkeit im Ereignisfall zu optimieren sowie die gesamtwirtschaft-lichen Auswirkungen infolge von Modernisierungen beziehungsweise Erneuerungen strategisch zu berücksichtigen. Der letzte Beitrag in diesem Block stellt Ihnen das Ergebnis des Forschungsprojektes „RITUN – Resiliente Straßentunnel“ vor.
Abgerundet wird die Veranstaltung mit Praxisbeispielen zur Nachrüstung von Tunneln unter Verkehr. Am Engelbergbasistunnel bei Leonberg und am Rathaustunnel in Lüdenscheid wird die Bandbreite zu treffender Maßnahmen für die Aufrechterhaltung eines sicheren Verkehrsablaufs während umfang-reicher Ertüchtigungsarbeiten dargestellt.
An dieser Stelle sei allen Autoren gedankt, die zu dieser gelungenen Veranstaltung beigetragen haben.
In Germany, expenditure for the construction of new and maintenance of existing federal highways is currently at a record level of EUR 8 billion per year. In connection with the planned infrastructure policy reforms it is necessary to further develop the planning tools for dimensioning and substance assessment of road structures in order to increase the efficiency of construction measures. The stress caused by traffic is of central importance here. Since unevenness in the road surface has a significant influence on the dynamic part of the wheel load, dynamic effects must be explicitly taken into account. As a result, increasing unevenness can lead to higher dynamic loads and, in the context of a corresponding number of wheel rollovers, to disproportionate damage to the road structure. In general, a shock factor is taken into account during dimensioning, which is to be considered as a function of vehicle suspension, load, speed and evenness. This approach is not sufficient for concrete road structures executed as slabs. In the normal case, only the periodically occurring individual event of a transverse contraction joint, superimposed by irreversible and/or temporary slab deformations, can lead to a significant increase in the dynamic wheel load. In addition, the existing slab deformations are tied to many boundary conditions and can therefore vary greatly in their characteristics. For the further development of methods for dimensioning and residual substance assessment with regard to their accuracy, a three-dimensional slab-specific view of the road surface is therefore appropriate. In this paper, a suitable measuring method for three-dimensional surface laser scanning and an algorithm for the classification of slab deformations are presented.
Cycling supports the independence and health of the aging population. However, elderly cyclists have an increased injury risk. The majority of injured cyclists is victim of a single-sided accident, an accident in which there is no other party involved. The aim of the project "Safe and Aware on the bicycle" is to develop guidelines for an advisory system that is useful in preventing single-sided accidents. This system is able to support the elderly cyclist; enabling the cyclist to timely adapt his cycling behaviour and improve cycling safety and comfort. For the development of such advisory system the causes of singles accidents and the wishes of the elderly cyclist must be known. First step to obtain this insight was a literature survey and an GIDAS research. Unfortunately accidentology research with GIDAS did not give the full understanding of the pre-crash situations and (especially the behaviour related) factors leading to the accident. The second step was consultation of elderly cyclist through a questionnaire (n=800), in-depth interviews (n=12) and focus group sessions (n=15). This offered complementary information and a much better understanding of the behavioural aspects. Results concern the behaviour in traffic and identify specific physical (i.e. problems looking backwards over the shoulder) and mental issues. Furthermore, the needs and wishes for support in specific cycling situations were identified. In conclusion; The GIDAS results together with the information obtained contacting the elderly cyclists enabled setting up requirements for an advisory system, which is useful in preventing single-sided accidents.
Road safety is a major preoccupation of the European Commission and the road transport industry and depends on numerous significant factors. In order to improve road safety and to plan effective safety improvement actions for truck transport, we must first identify the problems to be addressed, i.e. what are the main causes of truck accidents. The ETAC project, initiated by the European Commission and the IRU, was launched in order to set up a heavy goods vehicle accident causation study across European countries to identify future actions which could contribute to the improvement of road safety. The results will be based on a detailed analysis of truck accident data collected in seven European countries according to a common methodology which has been elaborated through numerous national and European projects. This paper describes the common methodology used to collect the information on the scene of the accident and to analyse the data so that the reconstruction of the crash events may be carried out. CEESAR proposes a methodology using its experience gained from over 10 years of accident data collection. This methodology is based on an in-depth investigation of the parameters involved in-an accident and linked to the driver, the vehicle, the road and their environment. In-depth investigation requires accident investigator presence on the scene of the accident in order to collect volatile information such as marks on the road, weather conditions, visibility, state and equipment of the vehicle, driver interview. Later, passive and active information is gathered, either at the hospital for the driver, at the garage for the vehicle or on the spot for the road geometry. A reconstruction carried out with the help of specific software and the analysis of the data collected and calculated enables the identification of the main causes of the accident and the future actions to plan in order to improve road safety as regards truck traffic.
Accidents between right turning trucks and straight driving cyclists often show massive consequences. Accident severity in terms of seriously or fatally injured cyclists that are involved is much higher than in accidents of other traffic participants in other situations. It seems clear that adding additional mirrors will very likely not improve the situation. At ESV 2015, a methodology to derive test procedures and first test cases as well as requirements for a driver assist system to address blind spot accidents has been presented. However, it was unclear if and how testing of these cases is feasible, to what extent characteristics of different truck concepts (e.g. articulated vehicles, rigid vehicles) influence the test conduction and outcome, and what tolerances should be selected for the different variables. This work is important for the acceptance of a draft regulation in the UN working group on general safety. In the meantime, three test series using a single tractor vehicle, a tractor-semitrailer combination and a rigid vehicle have been conducted. The test tools (e.g. surrogate devices) have been refined. A fully crashable, commercially available bicycle dummy has been tested. If used correct, this dummy does follow a straight line quite precisely and it does not cause any damage to the truck under test in case of accidental impact. The dummy specifications are freely available. During testing, the different vehicle categories resulted in different trajectories being driven. Articulated vehicle combinations did first execute a turn into the opposite direction, and on the other hand, single tractor vehicles did behave comparable to passenger cars. A possible solution to take these behaviors into account is to require the vehicles to drive through a corridor that is narrow for a precise straight-driving phase and extends during the turn. Other investigated parameters are the dummy and vehicle speed tolerances. The results from this research make it possible to draft a regulation for a driver assistance system that helps to avoid blind spot accidents: test cases have been refined, their feasibility has been checked, and corridors for the vehicles and for important parameters (e.g. test speeds) have been set. The test procedure is applicable to all types of heavy goods vehicles. In combination with the accidentology (ESV 2015 paper), the work provides the basis for a regulation for such an assistance system.
A lack of representative European accident data to aid the development of safety policy, regulation and technological advancement is a major obstacle in the European Union. Data are needed to assess the performance of road and vehicle safety and is also needed to support the development of further actions by stakeholders. This short-paper describes the process of developing a data collection and analysis system designed to partly fill these gaps. A project team with members from 7 countries was set up to devise appropriate variable lists to collect fatal crash data under the following topic levels: accident, road environment, vehicle, and road user, using retrospective detailed police reports (n=1,300). The typical level of detail recorded was a minimum of 150 variables for each accident. The project will enable multidisciplinary information on the circumstances of fatal crashes to be interpreted to provide information on a range of causal factors and events surrounding the collisions.
In the context of the COST357 research project, the climatic conditions and requirements for protective helmets for motorcyclists have been examined. The extent to which these factors would influence motorbike handling and accidents in which motorcyclists are involved have also been examined. This project addresses how cognitive abilities of motorcyclists relate to helmet construction factors. In particular, the aspects of motorcycle driver helmets are to be parameterized in order that they may be used subsequently as a basis for future requirement profiles. The task of one working group of the COST357 project has been to analyse accident events and to identify helmet design issues which affect motorcycle drivers while wearing a helmet. This has been achieved by collating accident data across different countries recorded in the course of in-depth investigations at the site of accidents and by combining this with field studies of motorcyclists participating in traffic, but not involved in accidents. This paper presents the study methodology, database and first results of this international survey. The basis of the study has been a total of 424 interviews of motorcyclists and 134 motorcycle accidents, which were collected across Germany, Greece, Italy, Ireland, Portugal and Turkey and combined in a single database.
Pelvic fracture, cracking or breaking of a portion of the pelvis are extremely common injuries in the side impact collisions of motor vehicles. Due to both its shape and structural architecture, mechanics of the pelvic bone is complicated. There is a lack of knowledge regarding the dynamic behavior of the pelvis and its biomechanical tolerance under impact environment. Hence this study is aimed at the understanding of the mechanical response of the human pelvis with three-dimensional finite element (FE) models, under side impact load, applied through a structure, equivalent to a car door. The door structure was modeled, considering few layers, consisting of foam (Styrodur®, 3035 CS), plastic (UHMWPE), steel, glass and steel, putting them in series. A soft tissue layer (equivalent to fat) was also considered on the greater trochanter location. These FE models (with and without the car door structure) were analyzed with ANSYS-LS-DYNA-® dynamic finite element software to compare the effect of the car door padding system for shock absorption. It was observed that with proper combination of shock absorbing material (foam, etc.) and its thickness, the transmission of impact load to the body part (pelvis, etc.) from the outer surface of the car door could be reduced.
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.