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Road authorities, freight, and logistic industries face a multitude of challenges in a world changing at an ever growing pace. While globalization, changes in technology, demography, and traffic, for instance, have received much attention over the bygone decades, climate change has not been treated with equal care until recently. However, since it has been recognized that climate change jeopardizes many business areas in transport, freight, and logistics, research programs investigating future threats have been initiated. One of these programs is the Conference of European Directors of Roads (CEDR) Transnational Research Programme (TRP), which emerged about a decade ago from a cooperation between European National Road Authorities and the EU. This paper presents findings of a CEDR project called CliPDaR, which has been designed to answer questions from road authorities concerning climate-driven future threats to transport infrastructure. Pertaining results are based on two potential future socio-economic pathways of mankind (one strongly economically oriented "A2" and one more balanced scenario "A1B"), which are used to drive global climate models (GCMs) producing global and continental scale climate change projections. In order to achieve climate change projections, which are valid on regional scales, GCM projections are downscaled by regional climate models. Results shown here originate from research questions raised by European Road Authorities. They refer to future occurrence frequencies of severely cold winter seasons in Fennoscandia, to particularly hot summer seasons in the Iberian Peninsula and to changes in extreme weather phenomena triggering landslides and rutting in Central Europe. Future occurrence frequencies of extreme winter and summer conditions are investigated by empirical orthogonal function analyses of GCM projections driven with by A2 and A1B pathways. The analysis of future weather phenomena triggering landslides and rutting events requires downscaled climate change projections. Hence, corresponding results are based on an ensemble of RCM projections, which was available for the A1B scenario. All analyzed risks to transport infrastructure are found to increase over the decades ahead with accelerating pace towards the end of this century. Mean Fennoscandian winter temperatures by the end of this century may match conditions of rather warm winter season experienced in the past and particularly warm future winter temperatures have not been observed so far. This applies in an even more pronounced manner to summer seasons in the Iberian Peninsula. Occurrence frequencies of extreme climate phenomena triggering landslides and rutting events in Central Europe are also projected to rise. Results show spatially differentiated patterns and indicate accelerated rates of increases.
Trauma management (TM) covers two types of medical treatment: the initial one provided by Emergency Medical Services (EMS) and a further one provided by permanent medical facilities. There is a consensus in the professional literature that to reduce the severity and the number of road crash victims, the TM system should provide rapid and adequate initial care of injury, combined with sufficient further treatment at a hospital or trauma centre. Recognizing the important role of TM for reducing road crash injury outcome, it was decided, within the EU funded SafetyNet project, to develop road safety performance indicators (SPIs) which would characterize the level of TM systems" performance in European countries and enable country comparisons. The concept of TM SPIs was developed based on a literature study of performance indicators in TM, a survey of available practices in Europe and data availability examinations. A set of TM SPIs was introduced including 14 indicators which characterize five issues such as: availability of EMS stations; availability and composition of EMS medical staff; availability and composition of EMS transportation units; characteristics of the EMS response time, and availability of trauma beds in permanent medical facilities. Basic information on the TM systems was collected in close cooperation with the national expert group. A dataset with TM SPIs for 21 countries was created. It was demonstrated that the countries can be compared using selected TM SPIs. Moreover, a more general comparison of the TM systems' performance in the countries is possible, using multiple ranking and statistical weighting techniques. By both methods, final estimates were received enabling the recognition of groups of countries with similar levels of the TM system's performance. The results of various trials were consistent as to the recognition of countries with high or low level of the TM systems" performance, where in grouping countries with intermediate levels of the TM system's performance some differences were observed. The SafetyNet project's practice demonstrated that data collection for estimating TM SPIs is not an easy task but is realizable for the majority of countries. The TM SPIs" message is currently limited to the availability of trauma care services. Further development of the TM SPIs should focus on characteristics of actual treatment supplied, based on combined police and medical road crash related databases.
FERSI ist eine internationale Gemeinschaft von Forschungsinstituten, die das gemeinsame Interesse an der wissenschaftlichen Forschung zur Verbesserung der Verkehrssicherheit verbindet. Nach über 10-jähriger, erfolgreicher Zusammenarbeit ist FERSI bestrebt, weiterhin einen wichtigen Beitrag der Forschung zur Lösung der Verkehrssicherheitsprobleme in Europa zu gewährleisten. Die Hauptziele von FERSI sind der internationale Erfahrungsaustausch, die Kooperation der Forschungsinstitute, die wissenschaftliche Unterstützung bei der ständigen Verbesserung der Straßenverkehrssicherheit sowie die Entwicklung und Durchführung gemeinsamer europäischer Forschungsprojekte zur Lösung von Straßenverkehrssicherheitsproblemen.
Umstellung der bautechnischen Bestimmungen im Brücken- und Ingenieurbau auf europäische Regelungen
(2002)
Der im November 1996 gefasste Beschluss des Bau-Koordinierungs-Normenaussschusses (NA) 07.1 "Brücken" nach einer baldmöglichen Anwendung der Eurocodes im Brückenbau wird nach Durchführung umfangreicher Vorarbeiten voraussichtlich Mitte 2002 mit der verbindlichen Einführung von DIN-Fachberichten verwirklicht werden. Seit Mitte 2001 stehen DIN-Fachberichte für die Bemessung und Konstruktion von Brücken- und Ingenieurbauwerken zur Verfügung, die in einer Erprobungsphase von etwa einem Jahr auf ihre Anwendbarkeit geprüft werden. Dies geschieht insbesondere anhand verschiedener Pilotprojekte. Die daraus gewonnenen Erfahrungen fließen in eine Fortschreibung der DIN-Fachberichte ein und sollen auch für die weitere Bearbeitung der Eurocodes bei CEN zur Verfügung gestellt werden. Gleichzeitig werden die zugehörigen vertraglichen Regelungen in den Zusätzlichen Technischen Vorschriften (ZTV) überarbeitet und zu einer ZTV-ING zusammengefasst. Die DIN-Fachberichte basieren auf den einschlägigen Eurocodes in der ENV-Fassung und den zugehörigen Nationalen Anwendungsdokumenten. Sie sind eine Zusammenfassung aller relevanten Regelungen aus den verschiedenen Eurocodes, nationalen Anpassungen und weiterhin gültigen nationalen Bestimmungen.