620 Ingenieurwissenschaften und zugeordnete Tätigkeiten
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Zentrale Zielsetzung dieses Forschungsvorhabens ist die Ableitung einer Grundlage für die quantitative Abschätzung der Sicherheitswirkungen verschiedener Bau-, Gestaltungs- und Betriebsformen von Landstraßen. Hierzu wurden erreichbare Unfallraten und Unfallkostenraten von Landstraßen differenziert nach Ausbaustandard und Betriebsformen abgeleitet. Die Unfallkenngrößen wurden dabei getrennt für die drei Teilbereiche eines Landstraßenzuges (freie Streckenabschnitte, Einflussbereiche von Knotenpunkten, Knotenpunkte) ermittelt. Während die mittlere Unfallkostenrate eines Untersuchungskollektives von Straßenabschnitten nur eine Aussage über die durchschnittlichen Unfallkosten in Bezug auf die Fahrleistung dieses Kollektives treffen, soll die Grundunfallkostenrate die bei richtliniengerechter Anlage einer Straße (Gestaltung und Betrieb) möglichen fahrleistungsabhängigen Unfallkosten widerspiegeln. Bei der Ermittlung der Grundunfallkostenraten dürfen prinzipiell nur richtliniengerecht ausgebildete Straßen Berücksichtigung finden. Aus der zugrunde liegenden Datenbasis war allerdings nicht erkennbar, ob es sich im Einzelfall um richtliniengerechte oder nicht richtliniengerechte Straßen handelt. Es war davon auszugehen, dass das Untersuchungskollektiv auch nicht richtliniengerechte Anlagen umfasst. Dabei ist zusätzlich das Maß der Abweichung von einer richtliniengerechten Straße unbekannt, sodass keine Aussage darüber getroffen werden kann, inwieweit sich der "Grad der Unsicherheit" auch auf das Unfallgeschehen auswirkt. Bislang existiert kein Verfahren, um aus einem inhomogenen Untersuchungskollektiv, das sowohl richtliniengerechte Straßen als auch nicht richtliniengerechte Straßen umfasst, Grundunfallkostenraten abzuleiten. Daher wurde ein Verfahren entwickelt, das durch statistische Analysen eine Abschätzung der Grundunfallkostenraten aus einem inhomogenen Untersuchungskollektiv ermöglicht. Anhand des entwickelten Verfahrens wurden anschließend die Grundunfallkostenraten für alle im Rahmen der vorliegenden Untersuchung betrachteten Straßen (differenziert nach Querschnittstypen und Knotenpunktarten) abgeleitet.
The overall purpose of the ASSESS project is to develop a relevant and standardised set of test and assessment methods and associated tools for integrated vehicle safety systems, primarily focussing on currently available pre-crash sensing systems. The first stage of the project was to define casualty relevant accident scenarios so that the test scenarios will be developed based on accident scenarios which currently result in the greatest injury outcome, measured by a combination of casualty severity and casualty frequency. The first analysis stage was completed using data from a range of accident databases, including those which were nationally representative (STATS19, UK and STRADA, SE) and in-depth sources which provided more detailed parameters to characterise the accident scenarios (GIDAS, DE and OTS, UK). A common analysis method was developed in order to compare the data from these different sources, and while the data sets were not completely compatible, the majority of the data was aligned in such a way that allowed a useful comparison to be made. As the ASSESS project focuses on pre-crash sensing systems fitted to passenger cars, the data selected for the analysis was "injury accidents which involved at least one passenger car". The accident data analysis yielded the following ranked list of most relevant accident scenarios: Rank Accident scenario 1 Driving accident - single vehicle loss of control 2 Accidents in longitudinal traffic (same and opposite directions) 3 Accidents with turning vehicle(s) or crossing paths in junctions 4 Accidents involving pedestrians The ranked list highlights the relatively large role played by "accidents in longitudinal traffic", and "accidents with turning vehicle(s) or crossing paths in junctions" (the second and third most prevalent accident scenarios, respectively). The pre-crash systems addressed in ASSESS propose to yield beneficial safety outcomes with specific regard to these accident scenarios. This indicates that the ASSESS project is highly relevant to the current casualty crash problem. In the second stage of the analysis a selection of these accident scenarios were analysed further to define the accident parameters at a more detailed level .This paper describes the analysis approach and results from the first analysis stage.
Event Data Recorder (EDR) is an additional function installed in airbag control module (ACM) to record vehicle and occupant information for a brief period of time before, during, and after a crash event. EDRs are now being installed in ACMs by several automakers in the USA and in Japan. The aim of this study is to understand the performance of EDRs for the improvement of accident reconstruction with more reliable information. In the first report of the study, data obtained from EDRs of seven vehicle types were evaluated using 2006-2007 J-NCAP (Japanese new car assessment program) full-lap frontal barrier crash tests and offset frontal deformable barrier crash tests data. For more practical standpoint, we conducted thirteen crash tests reconstructing typical real-world accidents such as single vehicle accidents with barriers or poles, car to car accidents and multi rear-end collisions focusing on Japanese typical accident types. Data obtained from EDRs are compared with data obtained from optical speed sensor, instrumented accelerometers and high speed video cameras. The velocities determined from pre-crash data of EDRs and the maximum change in velocity, delta-V, and delta-V time history data obtained from post-crash data of EDRs are analyzed. The results are as follows: - Pre-crash velocities of EDRs were very accurate and reliable. An average difference between the EDR recording values and reference speeds was 4.2% and a root mean square of the differences was 9.2%. Only two cases resulted large differences for the pre-crash velocity. Both of them were cases with braking prior to the collision. However, another test with braking resulted less difference. The braking condition may influence accuracy of pre-crash velocities. - Maximum delta-Vs obtained from the EDRs showed uncertainty of measurement in several cases in comparisons with the reliable delta-V data. The differences in maximum delta-V were more than 10% in five of twenty-five events data and more than 20% in two of twenty-five events data. An average of the all differences was about 4% and root mean square of the differences was about 11%. Especially large deformation at narrow area may influence accuracy of post-crash delta-V. - Multiple rear-end crash tests were reconstructed using EDRs data as case studies. Some EDRs recorded two events and a time gap between two events, so that these reconstruction case studies were very accurate and reliable. - If though only one of three vehicles in multiple rear end crash was equipped EDR, overview and velocities of all cars may be reconstructed using these limited EDR data. In this case study, leading car- EDR data and middle car- EDR data were valuable. However if only following car was equipped EDR, the reconstruction was not accurate
An analysis of NASS and FARS was conducted to determine crash conditions that involved injuries that are not currently being directly addressed by vehicle safety standards or by consumer information test protocols. Analysis of both field data and US NCAP tests were conducted to determine the relative safety provided by seating position and by vehicle model year. Opportunities for improvements were determined by crash categories with large populations of injuries that were not addressed by safety tests or smaller numbers that were increasing in frequency. Areas of opportunities include improved occupant restrain in rollovers, improved frontal protection for rear seat occupants and improved fire prevention in frontal and rollover crashes.
This study that was funded by the Research Association for Automotive Technology (FAT) develops a method for the evaluation of the placement of tanks or batteries by using the deformation frequencies in real-world accidents. Therefore, the deformations of more than 20.000 passenger cars in the GIDAS database are analysed. For each vehicle a contour of deformation is calculated and the deformed areas of the vehicles are transferred in a rangy matrix of deformation. Thereby, the vehicle is divided into more than 190.000 cells. Afterwards, all single matrices of deformation are summarized for each cell which allows representative analyses of the deformation frequencies of accidents with passenger cars in Germany. On the basis of these deformation frequencies it is possible to determine least deformed areas of all passenger cars. Furthermore, intended placements of tanks or batteries can be estimated in an early stage of development. Therefore, all vehicles with deformations in the intended tank areas can be analysed individually. Considering numerous parameters out of the GIDAS database (e.g. collision speed, kind of accident, overlap, collision partner etc.) the occurring forces can be calculated or the deformation frequency can be estimated. Furthermore, it is possible to consider the influence of primary and secondary safety systems on the deformation behaviour. The analysis of "worst case accident events" is an additional application of the calculated matrix of deformation frequency.
Das 4-jährige Forschungsprojekt verfolgte das Ziel, den möglichen Einfluss der Laufsohlenbeschaffenheit und des Mikroklimas vor und in Durchlässen von Amphibienschutzanlagen auf die erfolgreiche Durchquerung zu ergründen. Es sollte geklärt werden, welche Verhaltensweisen Amphibien und und andere Kleintiere bei der Tunneldurchquerung zeigen, welche physikalischen und mikroklimatischen Eigenschaften verschiedene Durchlasstypen und Laufsohlen haben und wie diese Einflüsse das Verhalten der Tiere beeinflussen. Das Ziel lag schließlich in einer konzeptionellen Betrachtung zum optimalen Einsatz sowie zur Gestaltung und Unterhaltung derartiger Straßenbauwerke. Untersucht wurden Hygroskopizität und Alkalität, Magnetfeldmuster, Vibrationen und verkehrsbedingte Lärmentwicklungen sowie die Lichtverteilung am Durchlasseingang. Gemessen wurden außerdem Lufttemperatur, Luftfeuchtigkeit, Windgeschwindigkeit und deren Austrocknungswirkung. In abgezäunten Versuchsarenen wurden eingesetzte Amphibien verschiedenen Wahlexperimenten ausgesetzt sowie die Auswirkungen auf das Verhalten anwandernder Tiere an Durchlässen mit vorgenommenen Veränderungen analysiert. Getestet wurden folgende Parameter: Ferromagnetismus, Lichtblitze vorbeifahrender Autos, Beleuchtung des Durchlasses, Luftzug und Lärm im Durchlass, Bodenfeuchtigkeit vor und im Durchlass, Versteckplatzangebote im Durchlass und Zuleitung der Durchlassöffnung. Außerdem wurde die Effizienz eines nachträglich eingebauten Einfallrohrs überprüft. Gut gewässerte Betonbauteile erwiesen sich als unwesentlich hygroskopisch. Viele Betonbauteile waren nur im oberen Tunnelbereich deutlich alkalisch, die Laufbereiche aber immer pH-neutral. Das Erdmagnetfeld wurde an Metallzäunen und metallarmierten Betonteilen aller Anlagen stark verändert und fiel dadurch als Orientierungsmöglichkeit für anwandernde und querende Tiere völlig aus. Tunnel mit schallhartem Betonboden waren lauter als Stelztunnel über einem Naturboden. Verkehrsbedingte Bodenvibrationen und Schallpegel konnten innerhalb der Durchlässe in ihrer Wirksamkeit aber eher vernachlässigt werden. Durchlässe waren hinsichtlich ihrer Lichtverhältnisse natürlichen Tiergängen vergleichbar und wurden bei grabfähigem Untergrund auch als Tagesversteck genutzt. Mikroklimatisch führten die Durchlässe von Amphibienschutzanlagen zu einer deutlichen Dämpfung von Tagesschwankungen der bodennahen Lufttemperatur, Luftfeuchte und von böigen Luftverwirbelungen, wie sie vor Leitanlagen und Durchlasseingängen herrschen. Trotzdem erhöhten Luftbewegungen in den Tunneln die Wasserverdunstung bis zum Doppelten, aber ohne erkennbare negative Auswirkungen auf das Wanderverhalten der Amphibien. Die Tiere liefen vor den Durchlassgängen häufig hin und her. Etwa 13% der beobachteten Tiere versuchte (erfolglos) durch Hochstellen und Klettern an Leit- und Sperreinrichtungen das Schutzanlagensystem zu umgehen. Die meisten Tiere hielten sich dicht an der Sperrwand, bzw. unmittelbar vor den Durchlasseingängen auf, während nur ein geringer Anteil auch tatsächlich hineinwanderte. An Durchlässen mit einem Fallrohr und auch beim Versuchsaufbau mit einen Kombinationssystem aus 1- und 2-Wegedurchlass waren die Eintrittsquoten dagegen nahezu vollständig. Neben Amphibien wurden auch Tiere zahlreicher anderer Tiergattungen bei der Durchquerung der Kleintierdurchlässe beobachtet. Anhand der Ergebnisse erscheint eine Überarbeitung des Merkblatts für Amphibien an Straßen (MAmS) sinnvoll.
Looking at the total of sum of fatal car accidents the number of single-vehicle accidents and particularly run-offroad (ROR) accidents are most frequent. In Austria on the Autobahn ROR accidents amounts to almost 45% of all fatal accidents, i.e. nearly every second fatal accident is caused by ROR accidents and interaction with infrastructure. Approximately 43 people were killed on Autobahns in ROR accidents with passenger cars. One possibility of protection against impacts with infrastructure is the use of guardrails. However, the initial element identified as a turned down terminal could become a dangerous impact object. These turned down terminals may lead a vehicle to roll over or the car "takes-off" when impacting the turned down guardrail. In many cases it is reported that the vehicle is jumping into road side objects such as traffic sign poles or overpasses. On average, nine people are killed in such accidents every year in Austria.
Since 2005, the motorcycle crash fatalities in the US exceeded 10% of the overall annual traffic fatalities. Consequently, it has become critical to gain in-depth understanding of the factors and characteristics contributing to motorcycle crashes. Unfortunately, there currently exists no database gathering the necessary information for an in-depth analysis of the US motorcycle crashes. So this study utilizes the NASS/CDS database (National Automotive Sampling System, Crashworthiness Data System) in order to gain insights into the patterns and factors leading to a NASS/CDS motorcycle crash, from 1997 to 2007. NASS/CDS samples about 5,000 passenger car tow-away crashes per year. Each case includes photographs and detailed data on crash and pre-crash characteristics, vehicle types, trajectories, types of impact, and other pertinent roadway and crash scene information, allowing an in-depth investigation of the crash mechanisms. However, the NASS/CDS sampling process specifically focuses on passenger car crashes, so the cases extracted only correspond to crashes in which a passenger vehicle was towed, and a motorcycle was somehow involved. Thus, a by-hand in-depth review of about 200 cases allowed retrieving 106 relevant crashes for this study, tending to represent the severe passenger vehicle(s) versus motorcycle(s) crashes on US roads. The findings lead to the conclusion that these crashes mostly result from the low conspicuity of the motorcycle, and from the inability of the car drivers to fully appreciate and anticipate the behavior of a motorcycle. Indeed, it has been shown that, first, the car drivers involved in these cases did not attempt any avoidance maneuver, second, they were largely of ages under 25, and finally, the majority of the crashes were in an intersection scenario. In addition, the two major scenarios unveiled were the car attempting a left turn from the opposite direction and the car attempting a left turn from the right. The paper mentions several solutions to enhance the motorcycle- conspicuity and to allow the car drivers to better anticipate its behavior, which seem to be key factors in the intersection-related crashes (and more generally in the passenger vehicle(s) versus motorcycle(s) crashes).
Small overlap frontal crashes are defined by a damage pattern with most of the vehicle deformation concentrated outboard of the main longitudinal structures. These crashes are prominent among frontal crashes resulting in serious and fatal injuries, even among vehicles that perform well in regulatory and consumer information crash tests. One of the critical aspects of understanding these crashes is knowing the crash speeds that cause the types of damage associated with serious injuries. Laboratory crash tests were conducted using 12 vehicles in three small overlap test conditions: pole, vehicle-to-vehicle collinear, and vehicle-to-vehicle oblique (15-degree striking angle). Field reconstruction techniques were used to estimate the delta V for each vehicle, and these results were compared with actual delta V values based on vehicle accelerometer data. Estimated delta Vs were 50% lower than actual values. Velocity change estimates for small overlap frontal crashes in databases such as NASS-CDS significantly underestimate actual values.
Providing effective occupant protection in rollover crashes requires supplying the occupant with a restraint system proven effective in the dynamic rollover accident mode. Preventing ejection and providing restraint sufficient to prevent potentially injurious contacts with both interior and exterior vehicle components is paramount for effective rollover occupant protection. Research has shown that the injury potential can be decreased by closely coupling the occupant to the seat. This paper focuses on the effect of restraint system slack and its relationship to occupant excursion and ejection potential during rollover. Various restraint system configurations are evaluated in rollover-type test environments. A review of prior research is presented prior to presenting new quasi-static vehicle inversion studies conducted with live surrogate occupants. Additionally, dynamic rollover testing utilizing anthropometric test devices (ATDs) is presented. The influence of belt looseness and effects of various restraint designs on the belted occupants' injury potential are discussed.