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Among European Countries, Spain first issued a Standard, UNE 135900:2005, further updated in 2008, that deals with homologation and effectiveness evaluation of road restraint systems components designed to reduce harm for bikers impacting on them. An in depth analysis and critical review of this standard is reported in this paper. Beside a close examination of the standard requirements, numerical models of the crash test stated by the standard have been set up and simulated to study the effects of slight speed and approach angle variations on test results, remaining within tolerance gaps allowed by the standard. Model were validated against experimental data. Together with the expected increasing severity of the impact according with speed, a strong influence of approach angle on injury parameters was found. Possible improvements to the norm, in order to make it more robust, are suggested.
This study updates previous IIHS studies comparing estimated delta Vs for crash tested vehicles to the distribution of estimated delta Vs in the National Automotive Sampling System (NASS) Crashworthiness Data System (CDS). The delta V estimates for 232 frontal crash tests at 64.4km/h into a deformable barrier with 40 percent overlap are compared with estimates from frontal offset crashes in the 1997-2004 NASS database. All delta V estimates were based on SMASH, the delta V estimating program used by NASS since 1997. Results indicated that for all vehicles tested by IIHS, SMASH delta Vs were, on average, 32 percent lower than impact speeds and about 28 percent lower than the expected delta V. Almost 80 percent of all real-world frontal crashes resulting in AIS 3+ injuries and just over 60 percent of all fatal crashes occur at or below the average estimated delta V calculated for crash tested vehicles.
The Centre for Automotive Safety Research (formerly the Road Accident Research Unit) at the University of Adelaide in South Australia has a history of in-depth crash investigation going back to the 1970s. In recent years, our focus has been on studying factors that contribute to road crashes, with an emphasis on the role of road infrastructure. Our method involves crash notification by the South Australian Ambulance Service and detailed investigation of the crash scene usually before the crash-involved vehicles have been moved. This at-scene data collection is supplemented with police crash reports, Coroner- reports including autopsy findings for fatal crashes, case notes from hospitals for all injured persons, structured interviews with crash participants and witnesses, and computerised reconstruction of the events of the crash. One of the most notable research findings to emerge from our in-depth work has been the relationship between travelling speed and the risk of crash involvement. By comparing the calculated free speeds of crash-involved vehicles (cases) with the measured speeds of non-crash-involved vehicles travelling on the same roads at the same time of day (controls), we were able to establish that an exponential relationship exists between travelling speed and the likelihood of involvement in a casualty crash. This was the case for both metropolitan and rural areas. This research prompted the reduction of some speed limits in Australia, which has resulted in notable decreases in crash numbers. Another finding of interest in our recent investigation of 298 mostly daytime crashes in metropolitan Adelaide was that medical conditions make a sizeable contribution to the occurrence of road crashes. We found that almost half of the drivers, riders and pedestrians involved in the collisions had at least one pre-existing medical condition, and half of these individuals had two or more such conditions. We found that a medical condition was the direct causal factor in 13% of the casualty crashes investigated and accounted for 23% of all hospital admission or fatal crash outcomes. A follow-up study of all hospital admissions for road crashes in Adelaide is now going ahead to look further at this problem. The paper also describes studies looking specifically at pedestrian crashes. These include studies of the relationship between travelling speed and the risk of a fatal pedestrian crash, and studies utilising real crash data to validate headforms and test dummies used in the assessment of the safety of new vehicles in the event of a collision with a pedestrian.
Recent findings from real-world accident data have shown that fatality risks for pedestrians are substantially lower than generally reported in the traffic safety literature. One of the keys to this insight has been the large and random sample of car-to-pedestrian crashes available in the German In-Depth Accident Study (GIDAS). Another key factor has been the proper use of weight factors in order to adjust for outcome-based sampling bias in the accident data. However, a third factor, a priori of unknown importance, has not yet been properly analysed. This is the influence of errors in impact speed estimation. In this study, we derived a statistical model of the impact speed errors for pedestrian accidents present in the GIDAS database. The error model was then applied to investigate the effect of the estimation error on the pedestrian fatality risk as a function of car impact speed. To this end, we applied a method known as the SIMulation-EXtrapolation (SIMEX) method. It was found that the risk curve is fairly tolerant to some amount of random measurement error, but that it does become flattened. It is therefore important that the accident investigations and reconstructions are of high quality to assure that systematic errors are minimised and that the random errors are under control.
The accident research of Hanover and (from 1999 on) Dresden registered 736 leg injuries (AIS ≥ 2) from 1983 to March 2007. 174 of these injuries (23.6 %) were fractures or dislocations of foot and ankle. 149 feet of 141 front seat car occupants in 140 cars were affected. Of these 117 were drivers, 24 were front seat passengers. The mean age of occupants was 38.5 -± 16.8 years. Ankle fractures were the most frequent injury (n = 82; 80 malleolar fractures, 2 pilon fractures). 34 fractures and dislocations affected the hindfoot (5 talus and 26 calcaneal fractures, 2 subtalar dislocations and 1 subtotal amputation) , 16 to midfoot (4 navicular fractures, 5 cuboid fractures, 3 fractures of cuneiformia, 2 dislocations of chopart joint, 1 subtotal amputation, and one severe decollement) and 39 the forefoot (metatarsal fractures). Open fractures were seldom seen (2 malleolar fractures, 1 metatarsal fracture). Both feet were injured in 10 cases. 33 occupants (23.4 %) were polytaumatic had a polytrauma, 17 of them died. 81 percent of the occupants were belted. The cars were divided in pre EuroNCAP (year of manufacture 1997 and older) and post EuroNCAP cars (year of manufacture 1998 and newer). Most of the foot injuries were seen in pre EuroNCAP cars. Most of the occupants sat in compact cars (40 drivers and 9 front seat passengers) and large family cars (27 drivers and 7 co-drivers). 49 of 140 accidents occurred on country roads, 26 on main roads and 13 on motorways. The crash direction was mostly frontal. Generally were found no differences of delta v- and EES-level between the injured foot regions, but divided into pre- and post-EuroNCAP cars there was a tendency to higher delta v- and EES-levels in newer cars. The frequency of foot injuries increased linearly with increasing delta v-level; but above delta v-level of 55 km/h the linear increase only was seen in pre-EuroNCAP cars, post-EuroNCAP cars showed no further increase of injuries. The footwell intrusion showed no difference between the injured foot regions but pre-EuroNCAP cars had a tendency to higher footwell intrusion. There were no differences in footwell intrusion between the car types. Only 29 of 174 fractures or dislocations of foot were seen in post-EuroNCAP cars, the predominate number of these injuries (n = 145) were noticed in pre-EuroNCAP cars. A lower probability of long-term impairment was found in post-EuroNCAP cars for equal delta v levels, using the AIS2008 associated Functional Capacity Index (FCI) for the foot region.
The purpose of this work is to investigate the association between the injuries in motorcycle accident and the main accident configurations. The data were provided by a multicentric case-control study MAIDS regarding the risk of crash and injuries of motorcyclists. Chi-square test was used to evaluate the relationship between the variables and a logistic regression was performed to evaluate the association of injury severity with some variables supposed to be predictive factors. Lesive patterns characterized by internal haemorrhages are mainly associated with fronto-lateral crashes, above all in urban areas. Lacerations or abrasions, mainly reported in torso and lower extremities, are mostly associated with single crashes or accidents in queue also for crashes occurred to low speed (< 50 km/h). The severity of injuries is highly associated with impact speed, regardless of the crash configuration. Fractures and haemorrhages play an important role in determining the severity of injuries. The upper extremities are the most frequently traumatised anatomic areas.
In-depth accident investigation offers many advantages for the analysis and comprehension of crash mechanisms. IFSTTAR makes such investigations since 1992 without interruption. The corresponding database contains more than 1200 accident case studies. Currently, in-depth accident investigation is one of the best ways to determine the speed or cars involved in accidents. This paper first presents the methods used for accident investigation and for accident kinematic reconstruction. Then, in order to illustrate the interest and possible applications of such accident data, it shows some results from a recent study based on the IFSTTAR in-depth accident study programme (IDAS) and dealing with the link between travelling speed and accident risk.
Mit einem Simulationsmodell wurden die Auswirkungen des Lkw-Überholverbots auf zweistreifigen Richtungsfahrbahnen in der Ebene und an Steigungsstrecken untersucht. Dabei wurde ein Einfluss von Anschlussstellen und von vorausliegenden Abschnitten (zum Beispiel Baustellen, Rückstau) ausgeschlossen. In Abhängigkeit vom Lkw-Anteil und von der Verkehrsstärke wurden Bereiche aufgezeigt, in denen sich die Geschwindigkeit des Verkehrsflusses steigert und in denen sich die Anzahl der Konfliktsituationen beim Fahrstreifenwechsel reduziert. Eine Umsetzung der Ergebnisse in ein Steuerungverfahren von Wechselverkehrszeichenanlagen ist damit möglich. Vor einer Anordnung des Lkw-Überholverbots mit statischer Beschilderung kann mit dem entwickelten Modell berechnet werden, zu welchen Tageszeiten und ab wieviel Tonnen (zum Beispiel größer 4 t) eine solche Anordnung sinnvoll ist.
Pedestrian and cyclist are the most vulnerable road users in traffic crashes. One important aspect of this study was the comparable analysis of the exact impact configuration and the resulting injury patterns of pedestrians and cyclists in view of epidemiology. The secondary aim was assessment of head injury risks and kinematics of adult pedestrian and cyclists in primary and secondary impacts and to correlate the injuries related to physical parameters like HIC value, 3ms linear acceleration, and discuss the technical parameter with injuries observed in real-world accidents based documented real accidents of GIDAS and explains the head injuries by simulated load and impact conditions based on PC-Crash and MADYMO. A subsample of n=402 pedestrians and n=940 bicyclists from GIDAS database, Germany was used for preselection, from which 22 pedestrian and 18 cyclist accidents were selected for reconstruction by initially using PC-Crash to calculate impact conditions, such as vehicle impact velocity, vehicle kinematic sequence and throw out distance. The impact conditions then were employed to identify the initial conditions in simulation of MADYMO reconstruction. The results show that cyclists always suffer lower injury outcomes for the same accident severity. Differences in HIC, head relative impact velocity, 3ms linear contiguous acceleration, maximum angular velocity and acceleration, contact force, throwing distance and head contact timing are shown. The differences of landing conditions in secondary impacts of pedestrians and cyclists are also identified. Injury risk curves were generated by logistic regression model for each predicting physical parameters.
Modellvorhaben Flächenhafte Verkehrsberuhigung - Band 2: Maßnahmendokumentation - Teil: Borgentreich
(1990)
Das Modellvorhaben "Flächenhafte Verkehrsberuhigung" wird in sechs Modellstädten, zu denen auch Borgentreich gehört, durchgeführt. Die zur Wirkungs- und Begleitforschung zaehlende Maßnahmendokumentation beinhaltet neben der Dokumentation der einzelnen Verkehrsberuhigungsmaßnahmen die Rekonstruktion des Planungsprozesses seit Auswahl der Modellgebiete. Der Beitrag befasst sich mit den Maßnahmen in der Stadt Borgentreich. Vorgestellt wird zum einen das Modellgebiet und dessen Charakteristika, zum anderen die Dokumentation des Planungsprozesses, welche die vorbereitende Phase, die Diskussionsphase vor Beginn der Umbaumaßnahmen, den Verlauf der Umbaumaßnahmen, ausgewählte Problembereiche sowie die Dokumentation der Einzelmaßnahmen umfasst. Mit den stark belasteten Ortsdurchfahrten, die gleichzeitig die örtlichen Hauptverkehrsstraßen mit allen ihren Funktionen sind , und den neuen Baugebieten am Ortsrand mit teilweise überdimensionierten Straßenräumen ist Borgentreich repräsentativ für viele ländliche Gemeinden in der Bundesrepublik. Die Bemühungen um flächenhafte Verkehrsberuhigung sind hier auch vor dem Hintergrund sozialer und wirtschaftlicher Probleme und ihrer Folgewirkungen zu sehen und damit beispielhaft für ähnliche kleinstädtisch-dörfliche Lebensräume. Das Handlungskonzept zur flächenhaften Verkehrsberuhigung in Borgentreich umfasste die Umgestaltung der Ortsdurchfahrten, der 5 klassifizierten Straßen: Torbildung an den Ortseinfahrten und am Beginn des Kernbereichs durch Pflasterung und Baumtore, Gestaltungsknotenpunkten und Querungsstellen und Querschnittsgestaltung im Ortskern durch gepflasterte Rautenmuster und Querbänder, gepflasterte Fahrbahnstreifen zur optischen Verschmälerung der Fahrbahnen. Weiterhin wurden einige Wohnstraßen im Ortskern zu Mischflächen umgestaltet, einzelne Kreuzungen zu Platzbereichen erweitert und das Konzept durch punktuelle Verkehrsberuhigungsmaßnahmen ergänzt.
Motorcycle crashes in Austria: Analysis of causes and contributing factors based on in-depth data
(2017)
From CEDATU, the in-depth accident database run by the Vehicle Safety Institute at Graz University of Technology, a representative sample of 101 crashes involving at least one motorcycle was selected. The analysis focused on causes for crashes as well as on contributing factors, but also included parameters of road, riders and vehicles. Own riding speed and "unexpectable action by another road user" were the most frequent causes for accidents. Inappropriate safety distance or delayed reaction were frequent, both as causation factors and as contributing factors. Infrastructure issues never cause an accident, but they are very frequent as contributing factors; road geometry and road guidance are by far most frequent among these. This paper also discusses accidents by type and other parameters (e.g. injury severity by body region, collision speed, age and others), and compares accident causes to previous studies as well as the police reported accident statistics.
Im Rahmen eines Gemeinschaftsprojektes der Technischen Universität München und des ADAC, Abteilung Verkehrstechnik, wurden im süddeutschen Autobahnnetz 4 Messstellen eingerichtet, an denen seit 1976 bzw. 1977 monatliche lokale Geschwindigkeiten und Fahrzeugabstände erhoben werden. Von der Bundesanstalt für straßenwesen wurden seit 1978 sieben weitere Messstellen auf dem nord- und westdeutschen Autobahnnetz eingerichtet, an denen zweimal jährlich Messungen durchgeführt werden. Damit können Trends und Entwicklungen im Geschwindigkeits- und Abstandsverhalten erkannt werden. Der Bericht gliedert sich in die Beschreibung der Voruntersuchung, die Beschreibung der Erweiterung der Analyse auf das Autobahnnetz und die Darstellung der Ergebnisse aller Erhebungen. Ein Rückschluss auf das absolute Geschwindigkeitsniveau im Gesamtnetz kann aus den Ergebnissen der einzelnen Messstellen nicht abgeleitet werden.
Es wurde anhand einer ersten Auswertung der Messdaten an der autobahnähnlichen B10 bei Karlsruhe und anhand einer Systematisierung weiterer zugänglicher PM10-Messergebnisse an Straßen im Anwendungsbereich des Merkblattes über Luftverunreinigungen an Straßen (MLuS 02) eine bessere Anpassung des existierenden Verfahrens zur Berechnung verkehrsbedingter PM10-Emissionen im Sinne einer schnell verfügbaren pragmatischen Zwischenlösung für diese Straßen erarbeitet. Mittels der NOx-Tracermethode konnten für die B10 bei Karlsruhe PM10-Emissionsfaktoren abgeleitet werden. Diese betragen im Wochenmittel 81 mg/(km Fzg), wobei an trockenen Werktagen 92 mg/(km Fzg) und an trockenen Sonntagen 59 mg/(km Fzg) ermittelt wurden. Anhand der Auswertung der Inhaltsstoffanalysen wurde u.a. abgeschätzt, dass an trockenen Werktagen ca. 50 % der PM10-Emissionen durch Auspuffemissionen realisiert werden, ca. 20 % durch Reifenabrieb, weniger als 1 % durch Bremsabriebe und ca. 30 % durch Straßenabriebe sowie Wiederaufwirbelung von Schmutzeintrag. Es wurde in diesen Überlegungen angenommen, dass sich die PM10-Emissionen einer Straße aus den Emissionen des Auspuffs sowie dem Anteil aus Abrieb und dem der Aufwirbelung infolge Reifen-, Brems-, Kupplungsbelags- und Straßenabrieb sowie Straßenstaub zusammensetzen. Dabei werden die Emissionen aus dem Auspuff bestimmt nach dem Handbuch für Emissionsfaktoren des Umweltbundesamtes (HBEFA). Die Emissionen für Abrieb und Aufwirbelung wurden auf Basis von aus vorliegenden Messergebnissen abgeleiteten Emissionsfaktoren (getrennt nach PKW und LKW) berechnet. Entsprechende Emissionsfaktoren werden angegeben. Unterschieden wird nach nicht überdeckelten Straßen und Tunnelstrecken. Für Tunnelstrecken, auf denen die Emissionen offenbar geringer sind als auf offenen Straßen, werden niedrigere PKW-Emissionsfaktoren angesetzt als für Straßen auf freier Strecke. Unterschieden wird auch weiterhin in Straßen mit gutem bzw. schlechtem Straßenzustand. Eine eindeutige Geschwindigkeitsabhängigkeit konnte aus den verfügbaren Daten nicht abgeleitet werden. Auch die Regenabhängigkeit ist weiterhin nicht eindeutig geklärt. Für die Bestimmung der Kurzzeitbelastung nach 22. BImSchV für PM10 und CO wurde auf Basis der Auswertung von Messdaten ein statistischer Zusammenhang abgeleitet für die Berechnung der Anzahl von Überschreitungen von 50 -µg PM10/m-³ als Tagesmittelwert beziehungsweise zur Bestimmung des maximalen gleitenden CO-8h-Wertes aus dem jeweiligen Jahresmittelwert. Der Bericht wurde um eine Zusatzuntersuchung zum Vergleich der PM10-Konzentrationen aus Messungen an der A1 bei Hamburg und Ausbreitungsberechnungen erweitert. Diese Zusatzuntersuchung enthält als Anhänge eine Fehlerdiskussion, eine Darstellung des Berechnungsverfahrens PROKAS zur Bestimmung verkehrserzeugter Schadstoffbelastungen sowie die MLuS 02-Protokolle zum PC - Berechnungsverfahren zur Abschätzung von verkehrsbedingten Schadstoffimmissionen nach dem Merkblatt über Luftverunreinigungen an Straßen der Forschungsgesellschaft für Straßen- und Verkehrswesen, Version 5.0j vom 26.02.2002.
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.
Bone fracture patterns could be crucial in reconstructing the nature of loading, especially in the lower limb and upper limb kinematics in vehicle-pedestrian crashes. In addition, use of FE bone models can be a handy tool to predict vehicle impact velocity and the impact direction. The point of fracture initiation in bone loading has been predicted quite accurately earlier. A methodology that predicts bone crack initiation and its propagation pattern for the six known loading directions using a single material and failure model is presented.
Relevant accident related factors : risk and frequencies of contributing to road traffic accidents
(2009)
In the course of the European Project TRACE (Traffic Accident Causation in Europe) an attempt was made to analyse the cause of road traffic accidents from a factors' point of view. By literature review the most important independent risk factors for traffic accidents were identified to be speed, alcohol intake, male gender, young age, cell phone use, and fatigue. However, the impact of an accident related factor also depends on its prevalence in traffic and accidents, respectively. Available to the Partners in the TRACE Project were different accident databases. Causally contributing factors found by accident investigations that are most often coded in accident databases are connected to unadapted speed and inattention. Taking into account the risk increase and the frequency of contribution to accidents the conclusion can be drawn that the most relevant factors for accident causation are: "alcohol", "speed", and "inattention and distraction".
Rollover scenarios in Europe
(2005)
Rollover accidents seem to be a rising problem in Europe and therefore the systematic of this accident scenario should be investigated. Based on statistical investigations on major European accident databases for different countries a series of 73 real world rollover accidents was analysed. These cases were reconstructed using PC-Crash and preliminary categorised using a modified USbased rollover classification. In a first step, the rollover events were reconstructed from the point of conflict to the vehicle- rest position. The vehicles kinematics as well as its linear and rotational velocities were derived. In a second step typical velocity characteristics as well as kinematics were identified and the events categorised according to these criteria. Based on these results four main categories were defined, covering all reconstructed accidents. This categorisation was based on mechanical parameters (rotatory and translator kinematical data of the vehicle). Significant differences can be seen for different scenarios for the "first phase of rollover".
In a first step, we have examined approximately 23 000 single vehicle accidents within the Austrian National Statistics database. In a second step, we considered 15% of all fatal "running off the road" accidents that occurred in Austria in 2003. As a result, two accident categories were specified; "leaving the road without preceding manoeuvre" and "leaving the road with preceding manoeuvre". These two categories can be basically characterised by the vehicle- heading angle and its velocity angle. In this report, we further suggest theoretical approaches for the dimensioning of a safety zone, an area adjacent to the road free of fixed objects or dangerous slopes. We also show the link between the two accident categories mentioned above and the real world accidents analysed in detail. These observations also form the basis for the required length for safety devices. Finally, we summarise accident avoidance strategies.
The main focus of the benefit estimation of advanced safety systems with a warning interface by simulation is on the driver. The driver is the only link between the algorithm of the safety system and the vehicle, which makes the setup of a driver model for such simulations very important. This paper describes an approach for the use of a statistical driver model in simulation. It also gives an outlook on further work on this topic. The build-up process of the model suffices with a distribution of reaction times and a distribution of reaction intensities. Both were combined in different scenarios for every driver. Each scenario has then a specific probability to occur. To use the statistical driver model, every accident scene has to be simulated with each driver scenario (combinations of reaction times and intensities). The results of the simulations are then combined regarding the probabilities to occur, which leads to an overall estimated benefit of the specific system. The model works with one or more equipped participants and delivers a range for the benefit of advanced safety systems with warning interfaces.
The aim of this study was to evaluate the performance and accuracy of Event Data Recorders (EDRs). The analysis was based on J-NCAP crash tests from 2006"2007, with the corresponding EDR datasets. The pre-crash velocity, maximum delta-V and delta-V versus time history data recorded in the EDRs were compared with the reliable crash test data. The difference between the EDR pre-crash velocity and the laboratory test speed was less than 4 percent. In contrast, in several cases the maximum delta-V and delta-V versus time history data obtained from the EDRs showed uncertainty of measurement in comparisons with the reliable delta-V data. The difference in maximum delta-V in these comparisons was more than 5 percent in 10 of 14 tests and more than 10 percent in 4 of 14 tests. The EDRs underestimated the maximum delta-V in almost all tests. It was also concluded that the calculated acceleration from the EDR delta-V versus time history data showed good agreement with the instrumented accelerometer signal during the collision in almost all tests.