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The grip between the road surface and vehicle tires is the physical basis for the moving of all vehicles in road traffic. In case of an accident the available grip level is one of the most relevant influence factors, influencing the causation and the procedure of the accident. However, the estimation of the grip level is not easy and therefore, is commonly not done on the accident scene. This is especially true for the measurement of the water depth. Until now, real accident databases provide no measurement data about the grip level and the water film depth and thus, the estimation of its influence is not possible yet. From the tyre manufacturers point of view, it is important to know about the road conditions (namely grip level, macro-texture, water depth, temperature) at the accident scene, as well as the operating conditions of the vehicles (braking, loss of control, speed, etc). These data is necessary to define relevant tyre traction tests for the end-user and for regulations. For this reason VUFO and Michelin developed a consistent method for the measurements of grip level and water depth for the accidents of the GIDAS database. The accident research team of Dresden, which documents about 1000 accidents with at least one injured person every year, is measuring the micro-roughness and the macro-roughness directly on the spot. For the measurement of the micro-roughness a Skid Resistance Tester (British Pendulum) is used. The Mean Texture Depth (describing the macro-roughness) is measured by the Sand Depth Method. Since June 2009, measurements for more than 700 accidents including 1200 participants have been carried out. In case of wet or damp road conditions during the accident, the water depth is measured additionally. Therefore VUFO and Michelin developed a special measurement device, which allows measurements with an accuracy of 1/10 millimetre. The measurement point at the accident scene is clearly defined and thus, the results are comparable for all different accidents and participants. The use of the GIDAS database and the accident sampling plan allows representative statements for the German accident scenario. With this data it is possible for the first time to have an accurate view of the road conditions at the accident scene. One possibility is a more detailed estimation of hydroplaning accidents using the actually measured water depths. The development of new testing methods and new tires can be based on the real situation of the road infrastructure. Furthermore, the combination of the technical GIDAS data and the measured road surface properties can also be used for the estimation of effectiveness of several safety systems like the brake assist and/or emergency braking systems. The calculation of a reduced collision speed due to the use of a brake assist is only one example for the application of real measured grip level data.
Having a look at safety to traffic and the prevention of accidents it can be observed that technical improvements in active safety of vehicles have let to various positive effects in this area. Among other components the tyre-road-contact takes a key role in the development of active safety technologies. All forces in accelerating, breaking and vehicle guidance have to be transmitted through the tyre-road contact area by friction forces. A common way to characterize a friction process is to identify the coefficient of friction μ between two touching materials. Even though there are several approaches to experimentially characterise road surfaces, no standard method exists. In this paper an overview of existing test methods is given. Furthermore the preliminary design of a newly developed portable test device with its possibility to investigate the tyre-road-friction of arbitrary roads or even places of accidents is shown.
The European CASPER (Child Advanced Safety Project for European Roads) project studying car child safety includes a sociological approach in order to have a better understanding of the behaviour of parents driving children under 12 years old. A questionnaire was distributed via the internet in Europe with 998 parents (representing 1638 children) from 22 European countries responding. The results inform on the way parents secure their children during a car trip. Many parents did not control how their children were installed in the child restraint system (CRS). A toddler was more likely to travel into a child seat than an older child was. Regarding misuse situations, an important part of the participants did not think that they could make mistakes when fixing the child seat to the car (26%) or when placing the child into the seat (39%). This leaves an important field of action especially by communication via different media and in the CRS sale outlets.
The main objective of EC CASPER research project is to reduce fatalities and injuries of children travelling in cars. Accidents involving children were investigated, modelling of human being and tools for dummies were advanced, a survey for the diagnosis of child safety was carried out and demands and applications were analysed. From the many research tasks of the CASPER project, the intention of this paper is to address the following: • In-depth investigation of accidents and accident reconstruction. These will provide important points for the injury risk curve, in order to improve it. Different accident investigation teams collected data from real road accidents, involving child car passengers, in five different European countries. Then, a selection of the most appropriate cases for the injury risk curve and the purposes of the project was made for an in-depth analysis. The final stage of this analysis was to conduct an accident reconstruction to validate the results obtained. The in-depth analysis included on-scene accident investigation, creating virtual simulations of the accident/possible reconstruction, and conducting the reconstruction. In the cases of successful reconstructions, new points were introduced to the injury risk curves. Accident reconstructions of selected cases were carried out in test laboratories as the next step following in-depth road accident investigation. These cases were reconstructed using similar child restraint systems (CRS) and the same type make and model as in the real accidents. Reconstructing real cases has several limitations, such as crash angle, cars" approximation paths and crash speed. However, a few changes and applications on the testing conditions were applied to reduce the limitations and improved the representations of the real accidents. After conducting the reconstructions, a comparison between the deformations of the cars on the real accident and the vehicles from the reconstructions was made. Additionally, a correlation between the data captured from the dummies and the injury data from the real accident was sought. This finalises an in-depth analysis of the accident, which will provide new relevant points to the injury risk curve. The CASPER project conducted a large research programme on child safety. On technical points, a promising research area is the developing injury risk curves as a result of in-depth accident investigations and reconstructions. This abstract was written whilst the project was not yet finished and final results are not yet known, but they will be available by the time of the conference. All the works and findings will not necessarily be integrated in the industrial versions of evaluation tools as the CASPER project is a research program.
Although the number of road accident casualties in Europe (EU27) is falling the problem still remains substantial. In 2011 there were still over 30,000 road accident fatalities. Approximately half of these were car occupants and about 60 percent of these occurred in frontal impacts. The next stage to improve a car's safety performance in frontal impacts is to improve its compatibility. The objective of the FIMCAR FP7 EU-project was to develop an assessment approach suitable for regulatory application to control a car's frontal impact and compatibility crash performance and perform an associated cost benefit analysis for its implementation. This paper reports the cost benefit analyses performed to estimate the effect of the following potential changes to the frontal impact regulation: • Option 1 " No change and allow current measures to propagate throughout the vehicle fleet. • Option 2 " Add a full width test to the current offset Deformable Barrier (ODB) test. • Option 3 " Add a full width test and replace the current ODB test with a Progressive Deformable Barrier (PDB) test. For the analyses national data were used from Great Britain (STATS 19) and from Germany (German Federal Statistical Office). In addition in-depth real word crash data were used from CCIS (Great Britain) and GIDAS (Germany). To estimate the benefit a generalised linear model, an injury reduction model and a matched pairs modelling approach were applied. The benefits were estimated to be: for Option 1 "No change" about 2.0%; for Option 2 "FW test" ranging from 5 to 12% and for Option 3 "FW and PDB tests" 9 to 14% of car occupant killed and seriously injured casualties.
Nowadays human-created systems are increasing in complexity due to the interaction of humans and technology. Especially road traffic systems are composed of multitudinous resources (e.g. personnel, vehicles, organizations, etc.), which make it even harder to anticipate the positive and negative effects on safety. One key in achieving a significant reduction of fatalities is seen in driver assistant systems counterbalancing the lack of drivers' capabilities. But the actual outcome of implementing these sophisticated technologies especially on influencing driver's capabilities are yet unknown. Latest research exemplifies an increase of reaction times of drivers in case of dysfunctional driver assistant systems. This research paper applies STAMP/STPA (STAMP = systems-theoretic accident model and processes; STPA = systems-theoretic process analysis) to the German automobile traffic system focusing on the effects of driver assistant systems on drivers. By doing so, the potential hazards caused by technology can be identified.
Rear-end collisions are the most frequent same and opposite-direction crashes. Common causes include momentary inattention, inadequate speed or inadequate distance. While most rear-end collisions in urban traffic only result in vehicle damage or slight injuries, rear-end collisions outside built-up areas or on motorways usually cause fatal or serious injuries. Driver assistance systems that detect dangerous situations in the longitudinal vehicle direction are therefore an essential safety plus. In view of this, for ADAC, systems that alert drivers to dangerous situations and initiate autonomous braking complement ESC as one of the most important active safety features in modern vehicles. The aim of ADAC is to provide consumers with technical advice and competent information about the systems available on the market. Reliable comparative tests that are based on standardised test criteria may provide motorists with important information and help them make a buying decision. In addition, they raise consumer awareness of the systems and speed up their market penetration. The assessment must focus on as many aspects of effectiveness as possible and include not only autonomous braking but also collision warning and autonomous brake assist. The work of the ADAC accident research is the development of the testing scenarios with direct link to accident situations and the identification of useful test criteria for testing.
To date, the Trauma Registry (TraumaRegister DGU-® contains data of approximately 100.000 severely injured patients, 65% of which suffered from a road traffic crash. Thus, it is the world's largest data base for severely injured patients. The article describes the development of the registry and explains how it was rolled out over Germany using the established structure of the German Trauma Network (TraumaNetzwerk DGU-®). In addition, this article presents three typical use cases from the fields of quality management, policy making and system-wide interventions, clinical research and injury prevention. In conclusion, the TraumaRegister DGU-® is a well-established tool for various purposes related to the control and reduction of the burden of road injury. Its ongoing expansion to other countries will support the goal of international benchmarking of hospitals and trauma systems.
The number of injured car occupants decreases constantly. Nevertheless, they account for nearly 50% of all fatalities and about 44% of all seriously injured persons in German traffic accidents. Further reductions of casualties require multiple efforts in all parts of traffic safety. In this paper a detailed analysis of the important pre-hospital rescue phase was done. The basis for future improvements is the knowledge about injury causation of car occupants in combination with other corresponding influence factors. For that reason more than 1.200 severe (AIS3+) injuries of frontal car occupants were analyzed. For the most relevant injuries of car occupants multivariate analysis models were created to predict the probability of these injuries in a real crash scenario. In addition to the collision severity different influence factors like impact direction, seat belt usage, age of the occupant, and gender were analyzed. Furthermore, the models were checked regarding the goodness of fit and all results all results were checked concerning their robustness. The prediction models were created on the basis of 5.000 car accidents. Afterwards, the models were validated using 4.000 different car accidents. The prediction of the probability of severe injuries could be used for different applications in the field of traffic safety. One possibility is the implementation of the models in a tool for the on-the-spot diagnosis. The background for the development of such applications is the fact, that there are only limited diagnostic possibilities available at the accident scene. Nevertheless, the rescue forces have to make essential decisions like the alerting of the necessary medical experts, appropriate treatment, the type of transportation and the choice of an adequate hospital. These decisions quite often decide between life and death or influence the long-term effects of injured persons. At this point, indications of expectable injuries could help enormously. To enable even persons with limited technical knowledge to use the tool, a procedure was developed that facilitates the assumption of the given crash severity. Another important possibility for the application of the prediction models is the use for the qualification of information sent by e-call systems.
Introduction: Spine injuries pose a considerable risk to life and quality of life. The total number of road deaths in developed countries has markedly decreased, e.g. in Germany from over 20000 in 1970 to less than 4000 in 2010, but little is known how this is reflected in the burden of spine fractures of motor vehicle users. In this study, we aimed to show the actual incidence of spine injuries among drivers and front passengers and elucidate possible dependencies between crash mechanisms and types of injuries.
The objective of the study is to measure the risk of pedestrian and bicyclist in urban traffic through an analysis of real-world accident data. The kinematics and injury mechanisms for both pedestrian and bicyclists are investigated to find the correlation of injury risks with injury related parameters. For this purpose, firstly 338 cases are selected as a sample from an IVAC accident database based on the In-depth Investigation of Vehicle Accident in Changsha of China. A statistic measurement of the fatality and serious injury risks with respect to impact speed was carried out by logistic regression analysis. Secondly, 12 pedestrian and 12 bicyclist accidents were further selected for reconstruction with MADYMO program. A comparative analysis was conducted based on the results from accident analysis and computer reconstructions for the injury risk, head impact conditions and dynamic response of pedestrians and bicyclists. The results indicate that bicyclists suffered lower risks of severe injuries and fatalities compared with pedestrians. The risks of AIS 3+ injury and fatality are 50% for pedestrians at impact speeds of 53.2 km/h and 63.3 km/h, respectively, while that for bicyclists at 62.5 km/h and 71.1 km/h, respectively. The findings could have a contribution to get a better understanding of pedestrians" and bicyclists" exposures in urban traffic in China, and provide background knowledge to generate strategies for pedestrian protection.
From literature well-known analyzes on risks, hazards and causes of accidents of older drivers are amended by the present study in which a comparison of the specific features of accident causes of older car drivers (older than 60 years) and of younger car drivers (under 25 years) is conducted. Mainly the question is pursued if specific errors, mistakes and lapses are predominant in the two different age groups. The analysis system ACAS (Accident Causation Analysis System) used hereby consists of a sequential system of accident causation factors from the human, the technical and the infrastructural field, whereupon for this study the influence of the human features on the accident development in two different age groups is of interest. ACAS is both an accident model and an analysis and classification system, which describes the human participation factors of an accident and their causes in the temporal sequence (from the perceptibility to concrete action errors) taking into consideration the logical sequence of individual basic functions. In five steps (categories) of a logical and temporal sequence the hierarchical system makes human functions and processes as determinants of accident causes identifiable. The methodology specifically focuses on the use in so-called "In-Depth" and "On-Scene" investigation studies. With the help of the system for each accident participant one or more of five hypotheses of human cause factors are formed and then specified by appropriate verification criteria. These hypotheses in turn are further specified by indicators in such manner that the coding of the causation factors by a code system meets the needs of database processing and are accessible to a quantitative data analysis. The first results of the descriptive comparison of the two age groups concern mainly differences in the functional levels "information admission/perception" (where the elderly drivers have more difficulties than the young ones) and "information processing/evaluation" (where the younger drivers show more problems). Concerning the cognitive function of "planning" the group of younger drivers seems to be more often involved in an accident because of excessive speed.
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.
Injuries in motorbike accidents in correlation with protective clothes and mechanism of the accident
(2013)
This study deals with a possible connection between safety clothing / accident mechanism and injury severity in a state-wide traffic accident investigation with focus on light and small motorbike-involvement for accidents in the area of the Saarland in which the persons riding the bike have been injured or killed. An interdisciplinary team of medical scientists and engineers collected the medical and technical data as well as all the relevant traces of the accident on scene and in time. During twenty months of data collection a total of 401 cases could be gathered. Grave injuries were more common for the group of heavier motorcycles (>125 ccm). Motorcyclists had been polytraumatized only in the group where the accident was connected with a collision. Significant correlation between protective clothes and injury severity could only be found for protective gloves and protective trousers. The knowledge about mechanism of the accident, protective clothes and severity of injuries can be helpful for the improvement of road and motorcyclists' safety.
Cycle helmets have continued to increase in popularity since their introduction half a century ago. Many studies indicate that overall, head injury can be significantly reduced by wearing them. This study was conducted using two distinct sets of real-world cycling collision data from Ireland, namely cases involving police collision reports and cases involving admission to a hospital emergency department. The analyses sought to simulate and analyse the protective performance of cycle helmets in such collision scenarios, by comparing the Head Injury Criterion score and peak head accelerations, both linear and angular. Cycle collisions were simulated using the specialised commercial software MADYMO. From the simulation results, these key metrics were compared between the same-scenario helmeted and unhelmeted cyclist models. Results showed that the inclusion of bicycle helmets reduced linear accelerations very significantly, but also increased angular accelerations significantly compared to unhelmeted situations. Given the modest protective performance of cycle helmets against angular accelerations, it is recommended that cycle helmet manufacturers and international test standards need to pay more attention to head angular accelerations.
10 % bis 20 % der Straßenverkehrsunfälle werden auf Müdigkeit am Steuer zurückgeführt. Es steht eine Vielzahl unterschiedlicher Methoden zur Verfügung, um Müdigkeit beim Fahrer zu erkennen. Ziel des vorliegenden Projekts war es, die Stärken und Schwächen der verschiedenen Müdigkeitsmessverfahren vergleichend zu beschreiben und existierende Müdigkeitsmess- und Müdigkeitswarnsysteme im Überblick darzustellen. Die Ergebnisse beruhen auf folgender Verknüpfung von Literaturanalysen, Experten- und Nutzerbefragungen: • Literaturanalyse und zusammenfassende Darstellung von Müdigkeitsmessverfahren, die auf physiologischen und leistungsbezogenen Messgrößen beruhen. • Literaturanalyse zu Müdigkeitsmess- und Warnsystemen, Befragung der Systemhersteller und zusammenfassende Darstellung der identifizierten Systeme. • Befragung von 20 Nutzern von den in Mittel- und Oberklassefahrzeugen implementierten Müdigkeitswarnsystemen zur Beurteilung der wahrgenommenen Detektionsgüte, Akzeptanz und Compliance. • Erarbeitung eines Gütekriterienkatalogs als Grundlage für die Bewertung und den Vergleich ausgewählter Müdigkeitsmessverfahren. • Zweistufige Befragung von 12 Experten aus Industrie- und Hochschulforschung nach der Delphi-Methode. Ziel war die Auswahl und Bewertung der validesten Verfahren zur Erfassung der Fahrermüdigkeit, begründeter Zweitbewertungen bei abweichenden Urteilen und der Beurteilung ihrer Eignung für verschiedene Einsatzgebiete. • Workshop mit den Delphi-Teilnehmern zur Diskussion und Ergänzung der Delphi-Ergebnisse. Die 70 in der Fachliteratur identifizierten Müdigkeitsmesssysteme unterscheiden sich in den zugrunde liegenden Müdigkeitsmessverfahren, dem Vorliegen und der Gestaltung von Warnfunktionen und ihrer Verbreitung. Nur selten werden überzeugende Validierungsbelege oder Angaben zur Anzahl falscher und ausbleibender Alarme angeführt. Aus Nutzersicht bieten die derzeit in Mittel- und Oberklassemodellen verfügbaren Müdigkeitswarnsysteme oftmals keine zufriedenstellende Detektionsgüte. Vielfach wird die Fahrt trotz detektierter und selbst eingestandener Müdigkeit fortgesetzt. Ca. die Hälfte der Fahrer sieht in der Nutzung der Müdigkeitswarnsysteme einen Zuwachs an Sicherheit. Zu den validesten Müdigkeitsmessverfahren gehören aus Expertensicht die Erfassung der Fahrperformanz (Lenkverhalten und Spurhaltung) und des Lidschlussverhaltens, das videobasierte Expertenrating, das EEG und der Pupillografische Schläfrigkeitstest. Die unterschiedlichen Stärken und Schwächen der sechs ausgewählten Messverfahren werden im Bericht detailliert aufgeführt. Nach wie vor existiert kein Goldstandard zur Müdigkeitserfassung. Je nach Einsatzgebiet sind entweder alle sechs ausgewählten Messverfahren (Forschung & Entwicklung), nur einige (Müdigkeitswarnsystem im Fahrzeug) oder kein einziges (Verkehrskontrolle) geeignet. Die Auswahl der Messverfahren sollte daher in Abhängigkeit des jeweiligen Ziels und Kontexts der Müdigkeitserfassung erfolgen und die spezifischen Stärke-Schwächenprofile berücksichtigen. Eine valide Müdigkeitserfassung bedarf der Kombination von mindestens zwei Messverfahren. Bedarf besteht in der Optimierung und der begleitenden Evaluierung der Müdigkeitswarnsysteme im Fahrzeug und der vielversprechendsten Messverfahren. Weitere Maßnahmen zur wirksamen Reduzierung müdigkeitsbedingter Unfälle wurden im Rahmen des Expertenworkshops diskutiert und im Bericht dargelegt.
Fahranfänger werden im Rahmen spezifischer, international unterschiedlich ausgestalteter Vorbereitungssysteme auf die motorisierte Verkehrsteilnahme vorbereitet. Diese Systeme sind historisch gewachsen und von länderspezifischen ökonomischen, infrastrukturellen, rechtlichen und kulturellen Gegebenheiten geprägt. Für eine vergleichende Systembetrachtung wurde unter Rückgriff auf forschungsmethodische Ansätze der Vergleichenden Politikwissenschaft und lehr-lerntheoretische Grundlagen ein begrifflicher Rahmen erarbeitet, der eine Systembeschreibung und -analyse anhand funktional unterscheidbarer Lehr-Lernformen und Prüfungsformen ermöglicht. Im Bericht werden die Systeme der Fahranfängervorbereitung von 44 Ländern dargestellt. Die Beschreibungen basieren auf Befragungen von Experten verschiedener Institutionen (Verkehrsministerien, Fahrlehrerverbände, Prüforganisationen) sowie auf Literatur- und Internetrecherchen. Bei der Länderauswahl wurden " neben europäischen Ländern mit einer traditionell stark ausgeprägten formalen Fahrschulausbildung " auch "Graduated Driver Licensing"-Systeme berücksichtigt, die vor allem in der englischsprachigen Welt in Übersee anzutreffen sind. Sie sind durch die Gewährleistung eines umfangreichen Fahrerfahrungsaufbaus unter niedrigen Risikobedingungen durch Begleitetes Fahren ("supervised driving") vor dem Beginn des selbständigen Fahrens und protektive Sonderregelungen für Fahranfänger beim weiteren Fahrerfahrungsaufbau in der Anfangsphase des selbständigen Fahrens gekennzeichnet. Die Ergebnisse ermöglichen einen detaillierten Einblick in die länderspezifische Ausgestaltung der Fahranfängervorbereitung mit den Bestandteilen der formalen Fahrausbildung in Fahrschulen, informeller Lehr-Lernformen wie des Begleiteten Fahrenlernens, zu absolvierender Fahrerlaubnisprüfungen sowie rechtlicher Rahmenbedingungen und qualitätssichernder Maßnahmen. Vor dem Hintergrund von Evaluationsbefunden zur Sicherheitswirksamkeit wird die Funktionalität von Systembestandteilen und -architekturen diskutiert.
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.
Im Hinblick auf das Lösen werden Boden und Fels nach DIN 18300 beschrieben. Dabei werden bindige Bodenarten in Abhängigkeit von ihrer Konsistenz in unterschiedliche Bodenklassen unterteilt. Bodenarten von leichter bis mittlerer Plastizität und weicher bis halbfester Konsistenz werden der Bodenklasse 4 zugeordnet. Ausgeprägt plastische Tone von weicher bis halbfester Konsistenz gehören der Bodenklasse 5 an. Bodenarten von fester Konsistenz sind der Bodenklasse 6 zuzuordnen. Die Grenze zwischen halbfester und fester Konsistenz ist dabei über die Schrumpfgrenze definiert, die nach DIN 18122-2 bestimmt wird. Da vor allem bei leichtplastischen Böden der Wassergehalt an der Schrumpfgrenze häufig oberhalb des Wassergehaltes an der Ausrollgrenze liegt, kommt es bei der Einordnung bindiger Böden in die Bodenklassen der DIN 18300 häufig zu Unklarheiten, was zu Streitfällen zwischen Auftragnehmer und Auftraggeber führen kann. Das Ziel des Forschungsvorhabens war es deshalb, ein geeigneteres Kriterium zur Einordnung halbfester und fester Böden in die Bodenklassen der DIN 18300 zu erarbeiten und dazu eine Versuchstechnik zu entwickeln. In einem ersten Schritt wurde das Schrumpfverhalten bindiger Böden analysiert und die Versuchstechnik zur Bestimmung der Schrumpfgrenze untersucht. Es hat sich gezeigt, dass bei Böden mit einer Plastizitätszahl IP < 18 % der Wassergehalt an der Schrumpfgrenze in der Regel oberhalb des Wassergehalts an der Ausrollgrenze liegt. Anhand von Untersuchungen zum Schrumpfverhalten an Proben, die bei unterschiedlichen Spannungen vorbelastet worden waren, wurde ausserdem festgestellt, dass der Wassergehalt an der Schrumpfgrenze mit zunehmender Vorbelastung abnimmt. Diese Untersuchungen haben damit bestätigt, dass anhand der nach DIN 18122-2 ermittelten Schrumpfgrenze keine eindeutige Zuordnung in die Bodenklassen 4 und 6 bzw. 5 und 6 möglich ist. Deshalb wurden im Folgenden Untersuchungen zu anderen Kriterien zur Unterscheidung zwischen halbfesten und festen Böden durchgeführt. Hierzu wurden zunächst Untersuchungen zur einaxialen Druckfestigkeit durchgeführt. Da das Herausarbeiten von ungestörten Probekörpern im relevanten Konsistenzbereich aber mit großen Schwierigkeiten verbunden ist, kann die Verwendung der einaxialen Druckfestigkeit zur Einordnung der Bodenklassen nicht empfohlen werden. Im Rahmen des Forschungsvorhabens wurden daher im weiteren Verlauf Untersuchungen zu einem einfach durchzuführenden Versuch durchgeführt, der eine Unterscheidung von halbfestem und festem Boden auf Grundlage der Festigkeit ermöglicht. Dazu wurden an aufbereiteten Böden Eindringversuche mit einer Proctornadel und einer Konusspitze durchgeführt. Die Versuchsergebnisse belegen, dass ein klarer Zusammenhang zwischen der Konsistenz und dem Eindringwiderstand besteht und dass eine Bewertung der Festigkeit mit Hilfe dieser Versuche prinzipiell möglich ist. Zur Festlegung konkreter Werte für eine Unterscheidung der Bodenklassen 4, 5 und 6 gemäß DIN 18300 sind jedoch weitere Untersuchungen erforderlich.
Kategorie-1-Schäden bei orthotropen Fahrbahnplatten treten als bauweisenunabhängige Schäden in Form von Rissen im Anschlussbereich Deckblech-Längsrippe auf. Zur Vermeidung dieser Schäden sind geeignete Instandsetzungsmaßnahmen zu entwickeln, die zu einer Verminderung der Spannungen und Durchbiegungen in den gefährdeten Bereichen führen. Im Rahmen eines aktuellen Forschungsvorhabens an der Universität Duisburg-Essen wird der Ansatz verfolgt, einen modifizierten Fahrbahnbelag bestehend aus einem mit Epoxydharz oder alternativ mit Bioharz verfüllten Asphalttraggerüsts mit erhöhter mittragender Wirkung einzusetzen. Des Weiteren wird im vorliegenden Beitrag der Einsatz von Betonfertigteilen aus UHPC erläutert.