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- 2014 (4) (entfernen)
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- Safety (4) (entfernen)
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- Abteilung Straßenverkehrstechnik (4) (entfernen)
Offenporige Asphaltbeläge besitzen mit 22 % Hohlraum im Belag und einer groben Kornstruktur an der Oberfläche einen wesentlich anderen Aufbau als dichte Beläge. Nach vorliegenden Erfahrungen und Ergebnissen von durchgeführten Untersuchungen erfordern die Belagseigenschaften der offenporigen Asphaltbeläge eine andere Anwendung von Tausalz. Die Bundesanstalt für Straßenwesen (BASt) führte in den vergangenen Jahren gemeinsam mit der Firma KOMMZEPT-Ingenieurbüro Hausmann umfangreiche Untersuchungen zum Salzeinsatz auf offenporigen Belägen durch. Dazu gehörten Laborversuche, Messungen zur Verweil- und Wirkungsdauer von Tausalz auf diesen Belägen und Auswertungen der Beobachtungen von Autobahnmeistereien in Bayern, Brandenburg und Niedersachsen. Die Ergebnisse der Untersuchungen zeigen, dass die offenporigen Beläge teilweise winterdienstlich anders behandelt werden müssen als die dichten Beläge. Die Offenporigen Asphalte besitzen im Vergleich zu dichten Belägen eine deutlich rauere Oberflächenstruktur. In den Poren des Belags fließt Wasser nicht vollständig ab. Durch Kapillarwirkungen lagert sich Wasser im Belag ähnlich wie in einem Schwamm ab. Dieses Wasser im Belag kann durch den Verkehr sogar wieder zur Oberfläche gesaugt werden, an der es bei Temperaturen unter 0 -°C vor allem nachts zu einer Eisschicht kommen kann. Aufgrund der größeren gebundenen Wassermengen muss mehr Salz auf offenporigen Asphalten gestreut werden. Ausgebrachtes Tausalz bleibt länger in den Oberflächenporen oder im Belag haften. Es wird im Vergleich zu dichten Belägen durch den Verkehr fast nicht zur Seite verweht. Vorbeugend ausgebrachtes Feuchtsalz dringt langsam in die Oberfläche ein. An den eigentlichen Kontaktflächen zum Reifen bleibt wenig haften. Deshalb ist der Einsatz von Tausalzlösungen bei Reifglätte oder geringer Feuchte (Nieselregen) wirkungsvoller.
The paper describes the development of transitions between different safety barriers in Germany but also in the context of the European standardization. In the paper practical and impact test expriences with transitions are shown. In view of the sheer number of theoretically possible combinations of safety barriers, the demand for testing every transition, even if the connecting safety barriers differ only slightly, appears to be economically unacceptable. On the other hand the experience from accidents and also from failed impact tests shows that transitions can be a risk to traffic safety. Therefore criteria for the distinction between transitions (impact test required/impact test unnecessary) are explained. In order to distinguish transitions which do not have to be impact-tested from those that require impact tests, criteria were developed and formulated.
Rural roads (highways) in Germany have to provide both high road safety and an appropriate level of service in accordance with their function in the road network. Single carriageway rural roads often underperform these expectations. An analysis of severe accidents on rural roads found two main contributing factors. First, high or inappropriate speed leads to accidents caused by the loss of control of the vehicle. Second, unsafe passing manoeuvres related to a misjudgement of sight distance, speed of oncoming vehicles or a misjudgement of the driver vehicle's acceleration capability. On the five roads where unsafe passing manoeuvres were a main contributing factor to accident occurrence, single short passing lanes (600 m to 1.2 km) were built to provide safe passing. On the remaining two-lane sections passing was prohibited by road signs and road marking. This paper investigates the effect of this design change on the accident situation and on traffic flow. The research project is based on a before/after comparison of traffic and accident data. Traffic volume, vehicle types and their velocities as well as the time gaps between the vehicles were recorded at different cross-sections. The result shows a significant improvement in road safety. This improvement was especially noted for severe head-on crashes, which were reduced to almost zero. The analysis of traffic flow on these roads pointed out that the chosen lengths of passing lanes were sufficient for safe passing and thereby reduced the need for dangerous driving behaviour. The recommendations of this research were fundamental for the determination of the design parameters of the second highest design class (EKL 2) in the new German Rural Road Design Guideline (RAL) published in spring 2013.
Structured road markings are becoming popular as edge line on high speed roads, ensuring night time visibility (retroreflection) during rain. These markings are often also "audio-tactile": vehicles (un)intentionally driving over it may produce much more tyre/road sound, which may be observed in the vehicle but also in the vicinity. The sound increase inside the car can be considered as a positive side effect, as it alarms the driver and may be very helpful for the prevention of "doze off" traffic accidents. The sound increase perceived outside the car however, may have a positive aspect as it can warn people on the emergency lane about the approaching vehicle, but it may as well annoy people living around. A method for the assessment of the acoustic properties of audio-tactile markings has been developed. It is mainly based on the "Close Proximity" (CPX) method, an ISO method intended for the acoustic assessment of pavements. The results of measurement campaigns with CPX trailers in Belgium and Germany according to a specially designed procedure are presented. The feasibility of the method is discussed. The research has been carried out in the frame of the standardization activities of the CEN working group CEN/TC226/WG2 "Horizontal signalization".