1、April 2011 Translation by DIN-Sprachendienst.English price group 8No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ICS 0
2、7.060; 13.030.40; 35.240.99!$nwl“1758473www.din.deDDIN EN 15518-3Winter maintenance equipment Road weather information systems Part 3: Requirements on measured values of stationary equipmentEnglish translation of DIN EN 15518-3:2011-04Winterdienstausrstung Straenzustands- und Wetterinformationssyste
3、me Teil 3: Anforderungen an gemessene Werte der stationren AnlagenEnglische bersetzung von DIN EN 15518-3:2011-04Matriels de viabilit hivernale Systmes dinformation mtorologique routire Partie 3: Exigences relatives aux valeurs mesures par des matriels fixesTraduction anglaise de DIN EN 15518-3:2011
4、-04www.beuth.deDocument comprises pagesIn case of doubt, the German-language original shall be considered authoritative.1303.11 DIN EN 15518-3:2011-04 A comma is used as the decimal marker. National foreword This standard has been prepared by Technical Committee CEN/TC 337 “Winter maintenance and ro
5、ad service area maintenance equipment” (Secretariat: AFNOR, France), Working Group WG 1 “Winter maintenance equipment” (Lead-management: DIN, Germany). The responsible German body involved in its preparation was the Normenausschuss Kommunale Technik (Municipal Services Standards Committee), Working
6、Committee NA 051-03-02 AA Maschinen fr den Straenbetriebsdienst (Spiegelgremium fr CEN/TC 151/WG 16 und CEN/TC 337). As regards requirements for stationary equipment in road weather information systems, DIN EN 15518-3 will replace the national regulation “Betriebstechnische Anforderungen fr Glttemel
7、deanlagen fr den Straenwinterdienst” (11/96 edition) issued by the Bundesanstalt fr Straenwesen (German Federal Highway Research Institute). This regulation contains requirements for ice warnings and reports of slippery road conditions. Requirements regarding data transmission from stationary equipm
8、ent to a data processing unit which are not covered by the present standard are laid down in the current edition of the Technische Lieferbedingungen fr Streckenstationen (TLS) (Technical terms of delivery for road stations) issued by the Federal Ministry of Transport, Building and Urban Affairs (BMV
9、BS). Aspects of road weather information systems that are not dealt with in this standard (such as forms of data transmission or sensor locations) will be covered in a national working paper by the Forschungsgesellschaft fr Straen- und Verkehrswesen (German Road and Transportation Research Associati
10、on (FGSV). 2 EUROPEAN STANDARD NORME EUROPENNE EUROPISCHE NORM EN 15518-3 February 2011 ICS 07.060; 13.030.40; 35.240.99 English Version Winter maintenance equipment Road weather information systems Part 3: Requirements on measured values of stationary equipment Matriels de viabilit hivernale Systme
11、s dinformation mtorologique routire Partie 3: Exigences relatives aux valeurs mesures par des matriels fixes Winterdienstausrstung Straenzustands- und Wetterinformationssysteme Teil 3: Anforderungen an gemessene Werte der stationren Anlagen This European Standard was approved by CEN on 1 January 201
12、1. CEN members are bound to comply with the CEN/CENELEC Internal Regulations which stipulate the conditions for giving this European Standard the status of a national standard without any alteration. Up-to-date lists and bibliographical references concerning such national standards may be obtained o
13、n application to the CEN-CENELEC Management Centre or to any CEN member. This European Standard exists in three official versions (English, French, German). A version in any other language made by translation under the responsibility of a CEN member into its own language and notified to the CEN-CENE
14、LEC Management Centre has the same status as the official versions. CEN members are the national standards bodies of Austria, Belgium, Bulgaria, Croatia, Cyprus, Czech Republic, Denmark, Estonia,Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta,
15、 Netherlands, Norway, Poland,Portugal, Romania, Slovakia, Slovenia, Spain, Sweden, Switzerland and United Kingdom. EUROPEAN COMMITTEE FOR STANDARDIZATION COMIT EUROPEN DE NORMALISATION EUROPISCHES KOMITEE FR NORMUNG Management Centre: Avenue Marnix 17, B-1000 Brussels 2011 CEN All rights of exploita
16、tion in any form and by any means reserved worldwide for CEN national Members. Ref. No. EN 15518-3:2011: EEN 15518-3:2011 (E) 2 Contents Page Foreword 3Introduction .41 Scope 52 Normative references 53 Terms and definitions .54 Requirements .7Tables Table 1 Measurement requirements . 8DIN EN 15518-3
17、:2011-04 EN 15518-3:2011 (E) 3 Foreword This document (EN 15518-3:2011) has been prepared by Technical Committee CEN/TC 337 “Winter maintenance and road service area maintenance equipment”, the secretariat of which is held by AFNOR. This European Standard shall be given the status of a national stan
18、dard, either by publication of an identical text or by endorsement, at the latest by August 2011, and conflicting national standards shall be withdrawn at the latest by August 2011. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights.
19、CEN and/or CENELEC shall not be held responsible for identifying any or all such patent rights. EN 15518, Winter maintenance equipment Road weather information systems, comprises of the following parts: Part 1: Global definitions and components Part 2: Road weather Recommended observation and foreca
20、st Part 3: Requirements on measured values of stationary equipment According to the CEN/CENELEC Internal Regulations, the national standards organizations of the following countries are bound to implement this European Standard: Austria, Belgium, Bulgaria, Croatia, Cyprus, Czech Republic, Denmark, E
21、stonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Romania, Slovakia, Slovenia, Spain, Sweden, Switzerland and the United Kingdom. DIN EN 15518-3:2011-04 EN 15518-3:2011 (E) 4 Introduction Road Weat
22、her Information Systems (RWIS) are complex structures used for road maintenance decision support, which feature as a rule the following components: meteorological sensors and instruments, transmission technology, computer systems for processing, representation and storing of information, road weathe
23、r forecasts and alarms, in relation to traffic control and traffic information systems and more. Stationary equipment performs the acquisition of road and meteorological information at a fixed location. This part of EN 15518 lays down the requirements for the recommended components of a stationary e
24、quipment of a RWIS. In the description of requirements a distinction is made between the components forming a basis stationary equipment for winter use and the recommended complementary components. The aim is to ensure extensive combination and interchangeability within the systems. With a set termi
25、nology for the components and the meteorological expressions an attempt is made to counteract a diversity of terms and designations for identical phenomena. DIN EN 15518-3:2011-04 EN 15518-3:2011 (E) 5 1 Scope This European Standard specifies the terminology and performance requirements for all comp
26、onents of stationary equipment within a Road Weather Information Systems (RWIS). 2 Normative references The following referenced documents are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the r
27、eferenced document (including any amendments) applies. EN 15144:2007, Winter maintenance equipment Terminology Terms for winter maintenance 3 Terms and definitions For the purposes of this document, the terms and definitions given in EN 15144:2007 and the following apply. NOTE The following definiti
28、ons have been established specifically for the RWIS domain. 3.1 surface 3.1.1 pavement surface temperature effective radiation temperature of a pavement surface 3.1.2 road surface condition qualification of the status of road surface affected by road weather phenomenon 3.1.3 water film thickness mea
29、n thickness of the film of water present on a flat surface 3.2 aerial 3.2.1 relative humidity filling rate of the mass of air with water vapour NOTE It is determined in relation to water, in liquid phase, and recorded under a screen at a height between 1,5 m and 4,0 m from the ground. 3.2.2 precipit
30、ation exclusion of falling water from the atmosphere in liquid and/or solid form which can be observed and measured on ground 3.2.3 rain precipitation in liquid form DIN EN 15518-3:2011-04 EN 15518-3:2011 (E) 6 3.2.4 depth of precipitation thickness of the layer of water obtained by precipitation or
31、 deposit on a horizontal surface if the precipitations falling in solid form were to melt 3.2.5 depth of snow raw thickness of snow deposited on the ground 3.2.6 intensity of precipitation depth of precipitations collected per unit of time 3.2.7 wind speed (instantaneous and mean wind) ratio of the
32、distance travelled by the air, per unit of time 3.2.8 gust of wind brief, sudden increase in the speed of the wind in relation to its mean value 3.2.9 wind direction (instantaneous and mean wind) direction from where the wind is blowing with respect to the magnetic north 3.2.10 visibility distance d
33、efined by the meteorological optical range 3.2.11 total radiation solar radiation received by a horizontal surface from the galactic centre, directed towards the ground, within a spectral range from 0,3 m to 3 m 3.2.12 atmospheric radiation high wavelength infrared radiation emitted by the atmospher
34、e, within a spectral range from 4 m to 100 m 3.2.13 total cloud cover fraction of the galactic centre hidden by all of the visible clouds NOTE It is defined by the International Meteorological Code 2 700. It is expressed in octa corresponding to the eighth of the galactic centre occupied by the clou
35、ds. 3.3 general 3.3.1 screen shelter built in such a manner that it protects its contents against solar radiation, precipitations and condensation and contributes at the same time to ventilation 3.3.2 sampling interval time between two readings meant for the elaboration of a value DIN EN 15518-3:201
36、1-04 EN 15518-3:2011 (E) 7 3.3.3 measurement interval time between two elaborated values 3.3.4 polling interval time between two transmissions of elaborated values 4 Requirements The requirements hereafter apply to sensors in road conditions. However, the accuracy requirements are meant for laborato
37、ry testing. Sensor set-up, calibration and special handling shall be specified by the manufacturer. The first column of Table 1 hereafter states “B” for parameters recommended in a basic configuration, and “O” for parameters considered as optional according to specific applications. a) Thermal resis
38、tance 1) sensors embedded in the pavement need to survive surface temperatures from 40 C to + 70 C; 2) equipment placed in the air need to survive air temperatures from 40 C to + 60 C. b) Chemical resistance All components of the road and weather information system installed on the pavement shall be
39、 resistant to the thawing agents and fuels to which roads are normally exposed. c) Mechanical resistance Sensors and other components embedded in the pavement shall withstand regular mechanical loads exerted by traffic, including rollovers by snow-clearing machines. d) Electro-magnetic resistance Al
40、l components of the road and weather information system shall not be affected by conventional environing electro-magnetic conditions. The equipment defined under this standard shall be considered as “Industrial equipment”. DIN EN 15518-3:2011-04 EN 15518-3:2011 (E) 8 Table 1 Measurement requirements
41、 Parameters Requirements B Pavement surface temperature Measuring range: 30 C to + 60 C Resolution: 0,1 C Accuracy: 15 C to 10 C, ( 0,2 C) 30 C to 15 C, ( 0,8 C) and + 10 C to 60 C , ( 0,8 C) B Road surface condition Dry: no humidity over the sensor Moist: from (0,01 mm) water film thickness over th
42、e sensor Wet: from (0,2 mm) water film thickness over the sensor Streaming water: from (2 mm) water film thickness over the sensor Slippery: detection at least of the presence of partly or wholly solidified aqueous solution over the sensor O Water film thickness Measuring range: 0,2 mm to 3 mm Resol
43、ution: 0,01 mm Accuracy: 0,2 mm to 3 mm, ( 30 %) Specific averaging can be required by the customer. DIN EN 15518-3:2011-04 EN 15518-3:2011 (E) 9 Table 1 (continued) Parameters Requirements B Freezing point temperature Measured: Measuring range: 30 C to 0 C Resolution: 0,1 C Accuracy: 0 C to 15 C, (
44、 0,5 C) 15 C to 30 C, ( 1,5 C) This requirement is independent of the de-icing agent being used. These accuracies are obtained under the following conditions: - Aqueous solution film thickness: 0,05 mm to 0,5 mm; - Measured from 4 C pavement surface temperature. Calculated Measuring range : 30 C to
45、0 C Resolution : 0,1 C Accuracy : 0 C to 2,5 C, ( 0,5 C) 2,5 C to 30 C, ( 20 %) This requirement depends on the de-icing agent being used. These accuracies are obtained under the following conditions: - Aqueous solution film thickness: 0,05 mm to 0,5 mm; - Under defined and constant de-icing agent;
46、- Measured from 4 C pavement surface temperature. O Road body temperature Measuring range: between 25 C and + 60 C Resolution: 0,1 C Accuracy: 1 C B Air temperature Measuring range: between 40 C and + 60 C Resolution: 0,1 C Accuracy: 0,1C between 10C and + 10C 0,5 C otherwise B Relative humidity Mea
47、suring range: at least between 30 % and 100 % Resolution: 1 % Accuracy: 3 % between 85 % and 100 % 5 % otherwise DIN EN 15518-3:2011-04 EN 15518-3:2011 (E) 10 Table 1 (continued) Parameters Requirements B Dew-point temperature Measured Measuring range: between 10 C and + 10 C Resolution: 0,1 C Accur
48、acy: 0,3 C Calculated Measuring range: between 10 C and + 10 C and relative humidity 85 % Resolution: 0,1 C Accuracy: 1,5 C B Precipitation detection time The following precipitation have to be detected in the following time:2 min: 1,2 mm/h 6 min: 0,4 mm/h 10 min: 0,1 mm/h B Precipitation type Distinction between solid and liquid precipitation with 8
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