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Innerörtliche Knotenpunkte zählen zu den Hauptgefahrenstellen für den Radverkehr. Insbesondere größere lichtsignalgesteuerte Knotenpunkte weisen oft Sicherheitsdefizite auf. Planungsstandard ist seit langem die Anlage von Radfahrstreifen zum Beispiel zur Führung direkt links abbiegender Radfahrer oder die Markierung von Furten und Aufstellbereichen zur Führung der indirekt abbiegenden Radfahrer. Zunehmend kommen aber auch andere markierungstechnische Maß-nahmen zur Anwendung. Es zählen hierzu die Anlage von Schutzstreifen für den Radverkehr sowie die Markierung von aufgeweiteten Radaufstellstreifen (ARAS). Die Untersuchung widmet sich vor allem diesen neueren markierungstechnischen Lösungen. Den Ausgangspunkt der Untersuchung bilden eine Erläuterung der Gesamtsystematik der Radverkehrsführung an innerörtlichen Knotenpunkten sowie der wesentlichen in den Regelwerken verankerten Planungsprinzipien. Es folgt eine Zusammenstellung der in der Literatur verzeichneten markierungstechnischen Radverkehrsführungen unter Einbeziehung ausländischer Literatur. Eine breit angelegte Dokumentation verdeutlicht das derzeit realisierte Maßnahmenspektrum Aus diesem Kollektiv werden 50 Knotenpunkte für radverkehrsbezogene Unfallanalysen ausgewählt. In vertiefende Untersuchungen des Verkehrsverhaltens und des Verkehrsablaufs wurden 34 Fallbeispiele aus 14 Städten einbezogen. Hauptuntersuchungspunkte sind das Annäherungsverhalten von Radfahrern an den Knotenpunkt sowie das Aufstell- und das Anfahrverhalten, dies jeweils in Verknüpfung mit den Bewegungsvorgängen des Kraftfahrzeugverkehrs. Insgesamt wurden über 6.000 Radfahrer in die Verkehrsverhaltensbeobachtungen einbezogen. Die Untersuchung macht deutlich, dass es mit den untersuchten markierungstechnischen Maßnahmen bei entsprechender Ausgestaltung möglich ist, den Radfahrern in Knotenpunkten eine akzeptable Führung anzubieten. Die Arbeit benennt die Einsatzbedingungen und gibt Hinweise zur Ausgestaltung der Markierungslösungen. Der Originalbericht enthält als Anhang insgesamt 34 Untersuchungsfallbeispiele aus 14 deutschen Städten. Sie enthalten neben Fotos und grafischen Darstellungen der Knotenzufahrten, der Radverkehrsführung, der LSA - Regelung, des Straßentyps und des Umfeldes sowie die durchgeführten Beobachtungen und Beobachtungsschwerpunkte und eine Erfassung der Verkehrsbelastungen. Auf die Wiedergabe dieses Anhanges wurde in der vorliegenden Veröffentlichung verzichtet. Er liegt bei der Bundesanstalt für Straßenwesen vor und ist dort einsehbar. Verweise auf diesen Anhang wurden zur Information des Lesers im Berichtstext beibehalten.
The need for improved EU level accident information and data was identified in the EU White Paper on Transport Policy (2001)1 and detailed in the Road Safety Action Plan (2003)2. The plan specifies that the EC will develop a road safety observatory to coordinate data collection within an integrated framework.
Nigeria ranks one of the highest countries in the world with the largest accident, especially when measured by whiplash associated disorders, whereas, traffic safety education rate, data and information been widely known as preventive indicators have been grossly neglected. In Nigeria, traffic safety enlightenment, awareness, political understanding and appreciation of the problem's magnitude are lacking. This study, therefore, seeks to understand and document the fact that accident causation factors in Nigeria relate more to the problem of development, poverty, knowledge and education as evidenced in most other developing countries. Among the primary accident causation factors on Nigerian roads are: - lack of a transportation system or multi-model integration - sub-standard and obsolete vehicles and road furniture - poor road maintenance, investment and engineering management - paucity of road users' and drivers' knowledge, skill, enlightenment and education of the road Use This paper submits that Nigeria being a developing nation requires purely primitive strategies being cost effective (health wise) than curative measures. It is in this light that an enduring, comprehensive and sustainable traffic safety educational programmes information base and data inventory, analysis and implementations form the focus of this study. This effort will provide basic guidelines framework and implementation procedure for a successful prevention of whiplash associated disorder resulting from road traffic crashes in Nigeria and other parts of the world.
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.
This paper describes the methodology of In-Depth Investigation in Germany on the example of GIDAS (German In-Depth Accident Study). Since 1999 in Germany a joint project between FAT (Forschungsvereinigung Automobiltechnik or Automotive Industry Research Association) and BASt (Bundesanstalt für Straßenwesen or the Federal Road Research Institute) is being carried out in Hannover and Dresden. The methodology of this project is based on a statistically orientated procedure of data sampling (sampling plan, weighting factors). The paper describes the possibilities of such in-depth investigation on the results of the offered title. The accident cases were collected randomly within GIDAS at Hannover. There are more cases existing from previous investigation started in 1985 under the same methodology. The portion of rollovers can be established at 3.7% of all accidents with casualties in the year 2000. For the study 434 cases of car accidents with rollovers are used for a detail comprehensive analysis. The accidents happened in the years 1994 to 2000 in the Hannover area. The injury distribution will report about 741 occupants with rollover accident event. The presented paper will give an overview of the accident situations following in rollover movements of cars. The distributions of injury frequencies, injury severity AIS for the whole body and for the body regions of occupants will be presented and compared to technical details like the impact speed and the deformation pattern. The speed of the car was determined at the point of rollover and on the point of accident initiency. The characteristics of the kinematics followed in a rollover movement are analyzed and the major defined types of rollover will be shown in the paper. The paper will describe the possibilities of In-Depth Investigation methods for the approach of finding countermeasures on the example of car accidents with rollover and explaining the biomechanics of injuries in rollover movements.
Optimierung der Fahrerlaubnisprüfung : Ein Reformvorschlag für die theoretische Fahrerlaubnisprüfung
(2005)
Der vorliegende Bericht enthält konzeptionelle Vorschläge, wie es künftig unter Einbeziehung moderner Multimediatechnik bei der theoretischen Fahrerlaubnisprüfung besser gelingen soll, Fahrerlaubnisbewerber ohne ausreichende Befähigung zum Führen von Kraftfahrzeugen zu erkennen. Dafür wurden zunächst der einschlägige prüfungstheoretische Wissensstand aufgearbeitet und Gütekriterien für ein neues Prüfungssystem dargestellt. Weiterhin wurden in einer Reihe von europäischen Ländern Recherchen über Innovationen im Prüfungswesen durchgeführt; diesbezügliche Erfahrungen sind in das vorliegende Prüfungskonzept eingeflossen. Die gegenwärtige Praxis der theoretischen Fahrerlaubnisprüfung erscheint aus heutiger Sicht unter inhaltlichen und methodischen Gesichtspunkten als unbefriedigend. Die Kritik am derzeitigen Prüfungssystem lässt sich auch durch die Verwendung von transponierten computergestützten Versionen der bisherigen Prüfbogen nicht beheben. Deshalb wurden im vorliegenden Prüfungskonzept die Systematik und die Merkmale eines grundsätzlich neuen computergestützten Prüfungssystems dargestellt. Weiterhin wurden die zu erwartenden Prüfungsabläufe sowie die rechtlichen, technischen und organisatorischen Bedingungen für die Einführung dieses Systems einschließlich eines begrenzten Vorlaufprojekts skizziert. Um die wissenschaftliche Reflexion der methodischen Qualität des Prüfungssystems zu sichern, wurden auch Vorschläge für die Evaluation der neuen theoretischen Fahrerlaubnisprüfung entwickelt. Die Einführung des vorgeschlagenen Prüfungskonzepts lässt neben weiteren Vorzügen drei wesentliche Verbesserungen im deutschen Prüfungssystem erwarten: Eine engere Verbindung des Ausbildungsund Prüfungssystems soll die Lernmotivation der Fahrerlaubnisbewerber steigern, eine bessere Visualisierung der Prüfungsaufgaben wird die Ähnlichkeit der Prüfungsanforderungen mit realen Verkehrsanforderungen verbessern, und es wird ermöglicht, nicht nur die Qualität der Prüfungsaufgaben an sich zu analysieren, sondern auch die Vorhersagekraft der Prüfungsergebnisse für die spätere Unfall- und Delinquenzbelastung der Fahranfänger im Straßen-verkehr. Der Bericht enthält neben Vorschlägen zur Optimierung der theoretischen Fahrerlaubnisprüfung auch Anregungen zur ergänzenden Weiterentwicklung der praktischen Fahrerlaubnisprüfung.
This contribution introduces a number of psychological methods of analysis that are based on the practice-oriented collection of information directly at the site of an accident and that allow for an analysis and coding of the accident causes. Investigation examples and examples of the data combinations with basic medical and technical data are outlined. Objective of the collection is the inter-disciplinary investigation of human factors in the causes of accidents ("human-factor-analysis"). The psychological data are incorporated according to an integrative model for accident causes based on empiric algorithms in the data base of the accident research, where the clustered evaluation potential of comprehensive factors of the accident development can be illustrated. The central theoretical concept for the basic model of the progress of the accident from a psychological point of view comprises psychological indicators for the evaluation of the site of the accident for the analysis of the perception conditions as well as a classification of the gleaned data into the accident progress model according to chronological and local criteria. Perception conditions, action intentions and executions as well as conditions limiting perception and actions are acquired, using a questionnaire for persons involved in an accident, and are also integrated into the data structure concerning weighted feature characteristics as well as combined with other relevant features. Suitable systematization tools for the collection and coding of psychological accident development parameters have to be provided, which require primarily a model image of the corresponding processes from the persons involved in the accident (perceptions, expectations, decisions, actions). The interactive accident model contains components of the models by KÜTING 1990, MC DONALD 1972, SURREY 1969 and RASMUSSEN 1980. Based on the inter-action of the three partial systems "person", "vehicle" and "environment", the first step is the assessment of the situation by the persons involved in the accident. This is dependent on the personal attitudes and motives, on experiences and expectations concerning the progress of the situation. Subsequently, data concerning the manner of the coping with the ambiguous state as well as with the instable state (emergency reaction immediately before the accident occurs) are collected. The factors relating to the persons involved in the accident are gathered on several levels using corresponding questionnaires. The coding of the found and collected characteristics is conducted in a multidimensional evaluation relating to the technical results of the accident reconstruction and of the psychological classification, which are subsequently integrated in coded form into the data base of the accident research. The result of this analysis is a description of the development of the accident depicted on a chronological vector from a perception and decision theoretical perspective. This is explained in detail using exemplary cases.
Active safety systems are aimed at accident prevention, hence the knowledge required for their development is different from that required for passive safety systems aimed at injury prevention. Particularly, knowledge about accident causation is required. When looking at existing accident causation data, it is argued it fails to explain in sufficient detail how and why the accidents occur. Therefore, there is a need for detailed micro-level descriptions of accident causation mechanisms, and also of methodologies suitable for creating such descriptions. One study addressing these needs is the Swedish project FICA (Factors Influencing the Causation of Accidents and Incidents), where an accident investigation methodology suitable for active safety is developed, and in-depth accident investigations following this methodology are carried out on-scene in the area of Gothenburg by a multidisciplinary team. A preliminary aggregated analysis of different cases shows that the methodology developed is adequate for pointing out common contributing factors and devising principal countermeasures.
In-depth road traffic accident research in Spain is a fairly recent activity. In the past, only accident data that had been retrospectively processed by the national and regional traffic police forces was available. In 1999 Applus+IDIADA set up a permanent accident research unit to carry out indepth analysis of road accidents in Spain. Since then accidents involving cars, motorcycles, coaches and vulnerable road users have been thoroughly studied. The Applus+IDIADA accident research team has carried out work for the various traffic polices in Spain and it is currently involved in several research projects in which accidentology is one of the main tasks. The working methodology of the team is presented in the first part of the paper. In the framework of the European research project "Rollover" (GRD2-2001-50086), Applus+IDIADA has collected data, inspected scenarios and performed virtual reconstructions of twenty-six of the total seventy-six rollover accidents studied. The second half of the paper describes how these accident investigations were used to develop a test procedure for identifying possible improvements to the vehicle structure which augment occupant protection in a rollover scenario. In particular, a proposal for a new drop test for rollover assessment is presented. The cases were analysed for severity, in terms of injury to the occupants and damage to the vehicle, and taking into account whether a seatbelt was worn or not. The worst possible cases were identified as those that had severe occupant injuries and sizable damage to the occupant compartment when seatbelts had been worn. The most severe cases were then analysed further for impact position (roll and pitch angles) and the impact velocity. With these parameters taken into account, the most representative combinations could be found. This resulted in a series of configurations for possible drop tests. The results of the tests indicate where passenger vehicle structures need to be improved in order to increase occupant safety in the event of a rollover crash.
Because of actual developments and the continuous increase in the field of drive assistant systems, representative and detailed investigations of accident databases are necessary. This lecture describes the possibility to estimate the potential of primary and secondary safety measures by means of a computerized case by case analysis. Single primary or secondary safety measures as well as a combination of both are presented. The method is exemplarily shown for the primary safety measure "Brake Assist" in pedestrian accidents. Regarding accident prevention only the primary safety measure is determined.