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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.
The number of road accidents in Portugal has decreased significantly in the last decades, however, this tendency is not similar in all types of transportation. In the most recent years and by European standards, Portugal is still one of the leading countries concerning the number of fatalities in Powered Two Wheelers (PTW) accidents. To this effect, the in-depth investigation of PTW accidents is crucial and so, a thorough statistical analysis concerning the main factors influencing PTW riders injury severity accidents was undertaken regarding the 2007-2010 period in the National Road Safety Authority (ANSR) injured riders database using the software SPSS. In addition, to determine the importance of absent factors in the database analysis, such as velocity, a set of 53 real accidents involving PTW were also investigated and computationally reconstructed using the software PC-Crash. Lateral collisions between a motorcycle, its rider and the side of three different passenger cars were also simulated, varying the motorcycle impact angle and velocity in order to estimate the PTW deformation energy and the rider- injuries, as this accident configuration stands out in terms of frequency and even severity. The results of this detailed study are presented.
It is very important for Automotive OEMs to get feedback on their product performance on real roads for continuous improvement. Every OEM has a way of collecting this feedback for various performance parameters. Systematic accident research is a way to generate the information related to safety performance of the vehicle. In India, while there is a large amount of data related to the accidents, it is found this data is aimed at understanding the gross statistics and not directly useful for technology development. This paper explains learnings from a pilot study carried out in collaboration with an Emergency Medical Services provider on one of the expressways (motorways). This pilot study has resulted in development of working model that could now be scaled up at for wider application. The paper also presents some of the important observations based on the data collected.
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.
Police records about traffic accidents like used by IRTAD (International Road Traffic and Accident Database) and CARE (Community Road Accident Database) do not represent all road injuries. For instance, road accidents of bicyclists without a counterpart are usually not reported. Furthermore, IRTAD-like data contains hardly any information on injury outcome and accident circumstances. This information gap leads to an under-representation of the safety concerns of the most vulnerable road users like children and the elderly both in accident research and safety promotion. Injury registration for the European Injury Database (IDB), in turn, combines details of accident causation with diagnostic information that can be used to assess injury severity and long term consequences. The IDB is collecting data from hospital emergency department patients and is being implemented in a growing number of countries. In this article IDB results on mode of transport and injury outcome are presented from a sample of nine EU member states.
The paper gives an overview of the recent (mostly 2012) figures of killed bus/coach occupants (drivers and passengers) in 27 Member States of the European Union as reported by CARE. The Evolution of the figures of bus/coach occupants killed in road accidents urban, rural without motorway and on motorways from 1991 to 2010 in 15 Member States of the EU supplements this information. More detailed are the figures reported for Germany by the Federal Statistics. The paper displays long-term evaluations (1957 to 2012) for killed, seriously and slightly injured occupants in all kinds of buses/coaches. Midterm evaluations (1995 to 2012) of the figures of fatalities and casualties are displayed for different busses according to their identification of road using as coaches, urban buses, school buses, trolley buses and "other buses". To be able to compare the evolutions of the safety of vehicle occupants it is customary to use different risk indicators. Calculations and illustrations for three often used indicators with their development over time are given: fatalities, seriously injured and slightly injured per 100,000 vehicles registered, per 1 billion (109) vehicle-kilometres travelled and per 1 billion (109) person-kilometres. These indicators are shown for occupants of cars, goods vehicles and buses/coaches. For the period from 1957 until 2012 it is obvious, that for all three vehicle categories analysed there was a clear long-term trend towards more occupant safety in terms of casualties per vehicles registered and per vehicle mileage. This was most significant for car occupants but it can be seen for bus/coach occupants and goodsvehicle occupants as well. Figures of killed occupants and of casualties related to person-kilometres are calculated and displayed for the shorter period 1995 to 2012. Here it becomes obvious that the bus/coach is still the safest mode of transport for the occupants of road vehicles. Graphs for the casualty risk indices still show significantly higher risks for car occupants despite the corresponding curve moved sustainable downwards. It is remarkable, that the risks of being killed or injured for the occupants of urban buses is growing whereas the corresponding risk for the occupants of coaches in line traffic tends downwards. The article ends with a short comparison and discussion of the risk indicators which are actually published for the occupants (driver and passengers) of cars and the passengers of buses/coaches, railroads, trams and airplanes. The interpretation of such information depends on the perception and it seems that for a complete view not only one indicator should be used and the evolutions of the indicator values during longer periods (as displayed with examples in the paper) should also be taken into account.
Im Jahr 2015 wird in Deutschland sowohl die Zahl der Straßenverkehrsunfälle mit Personenschaden als auch die Zahl der Verunglückten insgesamt geringfügig zurückgehen. Die Anzahl der im Straßenverkehr Getöteten wird jedoch zum zweiten Mal in Folge ansteigen. Nach Schätzungen der Bundesanstalt für Straßenwesen (BASt) wird ein Anstieg um rund 2 % auf etwa 3.440 Getötete erwartet. Die Gesamtzahl der polizeilich erfassten Unfälle wird im Jahr 2014 dagegen erneut abnehmen und zwar um knapp 2 % auf gut 2,37 Millionen Unfälle (2013: 2.414.011). Bei der Zahl der Unfälle mit Personenschaden wird im Vergleich zu 2014 (302.435 Unfälle) ein leichter Rückgang um circa 0,5 % auf rund 301.000 Unfälle erwartet. Die Zahl der Verunglückten (verletzte und getötete Personen) wird dabei ebenfalls um knapp 0,5 % auf rund 391.000 Verunglückte im Jahr 2015 sinken. Bei der Zahl der Getöteten zeigen sich im aktuellen Jahr Anstiege bei fast allen Arten der Verkehrsteilnahme. Die Gesamtzahl der getöteten Pkw-Insassen wird um knapp 2 % ansteigen. Bei den getöteten Motorradnutzern wird ein Anstieg um etwa 7 % erwartet. Die Anzahl der getöteten Radfahrer wird um etwa 4 % sinken. Bei der Zahl der getöteten Fußgänger wird ein leichter Anstieg um knapp 4 % erwartet. Bei den Alkoholunfällen wird in diesem Jahr erneut ein Rückgang um etwa 600 Unfälle zu verzeichnen sein. Für die Gesamtfahrleistung der Kraftfahrzeuge wird im Jahr 2015 ein Anstieg um etwa 2,3 % erwartet. Auf Bundesautobahnen sowie auf den ausserörtlichen Bundesstraßen wird mit einem Anstieg der Fahrzeug-km um 2,5 % beziehungsweise 1 % gerechnet.
Im Jahr 2016 wird die Zahl der Unfälle mit Personenschaden sowie die Zahl der Verunglückten insgesamt geringfügig steigen. Die Zahl der im Straßenverkehr getöteten Personen wird jedoch nach Anstiegen in den beiden vergangenen Jahren 2016 wieder zurückgehen. Nach Schätzungen der Bundesanstalt fuer Straßenwesen (BASt) wird für die Zahl der im Straßenverkehr Getöteten im Jahr 2016 gegenüber 2015 ein Rückgang um circa 6% auf etwa 3.240 Getötete erwartet. Die Gesamtzahl der polizeilich erfassten Unfälle wird im Jahr 2016 um äber 3 % ansteigen. Mit gut 2,6 Millionen Unfällen erreicht die Zahl somit den höchsten Wert seit 1991. Bei der Zahl der Unfälle mit Personenschaden wird im Vergleich zu 2015 (305.659 Unfälle) ein weiterer Anstieg um knapp 1.000 Unfälle erwartet. Die Zahl der bei diesen Unfällen Verunglückten (verletzte and getötete Personen; 2015: 396.891) wird dabei ebenfalls um über 1.000 ansteigen, auf circa 398.000 Verunglückte im Jahr 2016. Dies wären jeweils die höchsten Werte seit 2009. Die Zahl der getöteten Motorradnutzer wird um über 100 beziehungsweise um circa 17 % zurückgehen. Die Gesamtzahl der getöteten Pkw-Insassen (2015:1.620) wird im Jahr 2016 um über 2 % sinken und damit etwa das Niveau von 2013/14 erreichen. Bei der Anzahl der getöteten Radfahrer (2015: 383 Getötete) wird erneut ein Rückgang um etwa 3 % erwartet. Die Zahl der getöteten Fussgänger im Straßenverkehr wird nach dem Anstieg im Vorjahr (2015: 537 Getötete; +2,7 %) dagegen wieder um knapp 4 % sinken. Bei den Alkoholunfällen mit Personenschaden (2015: 13.239) setzt sich der kontinuierlich rückläufige Trend fort. Für 2016 wird ein Rückgang auf etwa 13.000 Unfälle erwartet. Für die Gesamtfahrleistung der Kraftfahrzeuge wird im Jahr 2016 ein Anstieg um etwa 1,8 % erwartet. Auf Bundesautobahnen wird mit einem Anstieg um 2,5 % gerechnet.
Car occupants have a high level of mortality in road accidents, since passenger cars are the prevalent mode of transport. In 2013, car occupant fatalities accounted for 45% of all road accident fatalities in the EU. The objective of this research is the analysis of basic road safety parameters related to car occupants in the European countries over a period of 10 years (2004-2013), through the exploitation of the EU CARE database with disaggregate data on road accidents. Data from the EU Injury Database for the period 2005 - 2008 are used to identify injury patterns, and additional insight into accident causation for car occupants is offered through the use of in-depth accident data from the EC SafetyNet project Accident Causation System (SNACS). The results of the analysis allow for a better understanding of the car occupants' safety situation in Europe, thus providing useful support to decision makers working for the improvement of road safety level in Europe.