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Recently, EuroNCAP updated the upper legform test protocols. The main objective of this study is to establish the upper legform test in KIDAS (Korean In-depth Accident Study) taking into account domestic pedestrian accident data as well as anthropometric data to protect elderly pedestrians whose average height and weight is much smaller and lighter than other age groups, especially compared to Europeans. Therefore 230 cases of pedestrian accidents from KIDAS were investigated to explore the injury severity of body regions as well as age related injury patterns. Injuries of all body regions were examined, with a special focus on injuries of abdomen and pelvic area. On the other hand, in order to explore Korea's pedestrian accident environment, national police data and KIDAS (Korean In-depth Accident Study) data were compared. The results should be taken into account in future analyses and possible improvements, such as regulations and KNCAP test protocols, of the pedestrian safety policy in Korea.
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 study aimed at prediction of long bone fractures and assessment of lower extremity injury mechanisms in real world passenger car to pedestrian collision. For this purpose, two pedestrian accident cases with detail recorded lower limb injuries were reconstructed via combining MBS (Multi-body system) and FE (Finite element) methods. The code of PC Crash was used to determine the boundary conditions before collision, and then MBS models were used to reproduce the pedestrian kinematics and injuries during crash. Furthermore, a validated lower limb FE model was chosen to conduct reconstruction of injuries and prediction of long bone fracture via physical parameters of von Mises stress and bending moment. The injury outcomes from simulations were compared with hospital recorded injury data and the same long bone fracture patterns and positions can be observed. Moreover, the calculated long bone fracture tolerance corresponded to the outcome from cadaver tests. The result shows that FE model is capable to reproduce the dynamic injury process and is an effective tool to predict the risk of long bone fractures.
Detailed investigations and reconstructions of real accidents involving vulnerable road users
(2005)
The aim of this research is to improve knowledge about vulnerable road users accidents and more specifically pedestrians or cyclists. This work has been based on a complete analysis of real accidents. From accidents chosen from an in-depth multidisciplinary investigation (psychology, technical, medical), we have tried to identify the configuration of the impact: car speed, pedestrian or cyclist orientations. Then, we have made a numerical modelling of the same configuration with a multibody software. In particular, we have reproduced the anthropometry of the victim and the front shape of the car. A first simulation has been performed on this starting configuration. Next, effects of some parameters such as car velocity or victim position at impact have been numerically studied in order to find the best correlations with all indications produced by the in-depth analysis. Finally, the retained configuration was close to the presumed real accident conditions because it reproduces in particular the same impact points on the car, the same injuries, and is according to the driver statement. This double approach associating an in-depth accident analysis and a numerical simulation has been applied on pedestrian-to-car and bicyclist-tocar accidents. It has allowed us to better understand the real kinematics of such impacts. Even if this method is based on a case to case study, it underlines which parameters are relevant on a vulnerable road user accident investigation and reconstruction.
In the course of the EUROPEAN PROJECT TRACE all fatally injured pedestrians autopsied at the Institute for Legal Medicine in Munich in 2004 had been analysed by using the "Human Functional Failure (HFF) analysis" method. It was possible to apply this method although some restrictions have to be taken into account. The results derived from this analysis comprise first the failures the pedestrians (most often "impairment of sensorimotor and cognitive abilities") and the opponents (most often " Non-detection in visibility constraints conditions") faced in the accident, second the conflicts and tasks (pedestrian crossing the street conflicting with a vehicle from the side (which was going ahead on a straight road), the degree of accident involvement (pedestrians often the primary active part), and further the contributing factors to the accident (pedestrians most often "alcohol (> 0.05% BAC)", opponents most often "visibility constraints").
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.
Pedestrian accidents are one of the major concerns related with road accidents around the world. Portugal has one of the highest rates of pedestrian fatalities in Europe. In this paper an overview conditions were the pedestrian accidents occurred in Portugal is presented. In the last years, a project related with the pedestrian accidents has run in Portugal for the period 2004-2006 where 603 people died, 2097 have been severely injured and about 17000 slightly injured. Within this project all the pedestrian accidents in this period have been analysed providing global information about a wide range of aspects, since location, driver and pedestrian characteristics, weather and road conditions, among others. In addition, 50 in-depth accidents have been investigated and the data collected according the Pendant methodology. For this in-depth methodology detailed information about the accident has been collected, including injuries, vehicle damage, road conditions and road user- behaviour and actions. An accident reconstruction has been carried for each case including the determination of the speeds and driver actions, and the analysis of the contributing factors for the accident. Depending of the accident complexity, different methodologies have been used to analyse these accident, from the classical analytical equations such as Simms and Woods, to the use of detailed computational pedestrian models as those included in the commercial software- PC-Crash-® or Madymo-®. Also one of the goals of our investigation is the development of multibody models and methodologies for the reconstruction of pedestrian accidents. Some of these tools integrated in the commercial software Cosmos Motion-® are presented. The advantages of the different approaches are compared and discussed for some of the accidents investigated. With these tools the impact speed can be determined from the projection distance with analytical tools or PC-Crash-®, but more complex tools should be used to determine speed from the injuries, what is especially important for fatal accidents. The influence of the vehicle geometry and stiffness characteristics is another aspect analysed, where the influence of the vehicle stiffness has been determined using a combined multibody-finite elements approach within the software Madymo-®.
This report gives an overview of pedestrian accidents on Japanese roads. Database used for the analysis is national traffic accident data based on police reports. Relevant measures and background information ranging from vehicle safety, engineering and education are briefly reviewed, and area for further improvement is discussed.rn
Zu den gefährlichsten Situationen im Straßenverkehr gehört der Konflikt zwischen einem Lkw und einem ungeschützten Verkehrsteilnehmer UVT (Radfahrer und Fußgänger). In Deutschland ereignen sich jährlich schätzungsweise 135 Unfälle mit Personenschaden, an denen nach rechts abbiegende Lkw (>3,5 t) und UVT beteiligt sind. Die UVT geraten dabei oft unter den Lkw und werden dann von einer der Achsen überrollt. Aus der Unfallanalyse ergab sich, dass der Erstkontakt häufig (57%) im Bereich der rechten vorderen Lkw-Ecke erfolgt. Die Hälfte der UVT gerieten noch vor oder im unmittelbaren Bereich des rechten Vorderrads unter den Lkw. Baustellen- und Kommunalfahrzeuge waren mit 46% häufig an den Unfällen beteiligt. Das direkte und das indirekte Sichtfeld sind zentrale Einflussgrößen für die Situation des rechts abbiegenden Lkw. Besonders die unzureichende Sicht nach vorn und nach rechts bereitet den Lkw-Fahrern erhebliche Probleme. An der Verbesserung der Information über die Verkehrssituation für den Lkw-Fahrer wird vielfach gearbeitet. Einzelne Lösungsansätze basieren auf dem Einsatz zusätzlicher Spiegel. Andere Lösungen modifizieren die bislang übliche Spiegelzahl in Form und Anbringung. Das Versuchsprogramm umfasste neben der Nachbildung der besonders häufigen und kritischen Situationen der rechts abbiegenden Lkw mit UVT-Dummies auch statische Untersuchungen des Sichtfeldes. Neben einem Lkw mit Standardspiegeln kam dabei ein Forschungsträger mit einem durch die Frontscheibe einsehbaren Spiegelsystem zum Einsatz. Das Projekt setzte sich auch mit der Wirkung des Seitenschutzes auseinander. Die bislang als Bauvorschrift wirkende Richtlinie 89/297/EWG sollte zukünftig zu einer Wirkvorschrift unter Einbeziehung des Pkw - Anpralls geändert werden. Das im Rahmen des Projektes erstellte Sicherheitskonzept beinhaltet Maßnahmen zur Reduzierung des Gefahrenpotenzials für UVT durch rechts abbiegende Lkw. Dazu gehören unter anderem abgesenkte Unterkanten der Front- und Seitenscheiben und zusätzliche Kamera-Monitor-Systeme. Das neuartige Spiegelsystem des MIM-Fahrzeugs von DC verbessert die indirekte Sicht für den Lkw-Fahrer deutlich und reduziert damit die Unfallgefahr. Die in der Entwicklung befindlichen Abbiegeassistenten zeigen die zukünftige Richtung für elektronische Fahrerunterstützung (MAN Demonstrator) auf. Ein beim Rechtsabbiegen aktivierter akustischer Signalgeber am Lkw wäre zur Information der UVT hilfreich. Eine weitere Option besteht in der Nutzung der seitlichen Markierungsleuchten des Lkws als zusätzliche Fahrtrichtungsanzeiger beim Abbiegen. Fahrbahn-Knotenpunkte können noch sicherer gestaltet werden. An ampelgeregelten Knotenpunkten würde eine vollständige Phasentrennung des Grünlichts oder ein Phasenverzug (früheres Grünlicht für UVT) Unfälle zwischen Lkw und UVT vermeiden. Weiterhin wirken sich eine versetzte Anordnung der Haltelinien und ein Verschwenken der Radfahrwege und Gehwege weg vom Knotenmittelpunkt positiv aus. Der Gesetzgeber sollte -§ 5 (8) StVO ändern, der des Radfahrern und Mofafahrern erlaubt, stehende Kraftfahrzeuge rechts zu überholen. 10% der untersuchten Abbiegeunfälle sind in dieser Situation passiert. Aufklärungsarbeit bezüglich der Sichtprobleme am Lkw sowie über das Bewegungsverhalten beim Rechtsabbiegen ist dringend erforderlich. Es ist auch zu überlegen, ob Aktivitäten von Herstellern beziehungsweise Unternehmern anerkannt werden, die mehr tun als die gesetzlichen Vorschriften verlangen, zu einer Lockerung vorhandener Restriktionen führen können. Es gibt in innerstädtischen Bereichen für einige Fußgängerzonen vorgesehene Zeitfenster zur Anlieferung von Gütern. Solche Zeitfenster könnten für mit anerkannten zusätzlichen Sicherheitseinrichtungen ausgerüstete Lkw ausgedehnt werden. Schwere Lkw aus bestimmten innerörtlichen Bereichen möglichst herauszuhalten, um UVT zu schützen, ist nicht praktikabel. Selbst wenn es gelänge, für die Belieferung mit Post und Waren akzeptable Alternativen zu bieten, bliebe nach wie vor der Baustellenverkehr und die kommunale Entsorgung. An 46% der untersuchten Unfälle waren derartige Lkw beteiligt.
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.