ASTM D7228-2006a Standard Test Method for Prediction of Asphalt-Bound Pavement Layer Temperatures《预测地沥青路面铺层温度的标准试验方法》.pdf
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1、Designation: D 7228 06aStandard Test Method forPrediction of Asphalt-Bound Pavement Layer Temperatures1This standard is issued under the fixed designation D 7228; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last rev
2、ision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers a means of predicting tempera-tures within the asphalt-bound layer(s) of a flexible pavementsection.1
3、.2 Deflection testing commonly involves the measurementof pavement surface temperatures. This standard is based ontemperature relationships developed as part of the FederalHighway Administration (FHWA) Long Term Pavement Per-formance (LTPP) Seasonal Monitoring Program.2. Referenced Documents2.1 ASTM
4、 Standards:2D 4694 Test Method for Deflections with a Falling-Weight-Type Impulse Load DeviceD 4695 Guide for General Pavement Deflection Measure-mentsD 4602 Guide for Nondestructive Testing of PavementsUsing Cyclic-Loading Dynamic Deflection EquipmentD 5858 Guide for Calculating In Situ Equivalent
5、ElasticModuli of Pavement Materials Using Layered ElasticTheory2.2 AASHTO Standards:3T256-00 Standard Method of Test for Pavement DeflectionMeasurementsT317-02 Standard Method of Test for Prediction ofAsphalt-Bound Pavement Layer Temperatures2.3 Federal Highway Administration:4FHWA-RD-98-085, Temper
6、ature Predictions and Adjust-ment Factors for Asphalt Pavements, June 2000LTPP Guide to Asphalt Temperature Prediction and Correc-tion, Online Temperature Prediction and CorrectionGuideTOC, November 20023. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 BELLS an acronym based on
7、the initials of the fourdevelopers of the method: Baltzer, Ertman-Larsen, Lukanen,and Stubstad.3.1.2 depththe distance below the surface of the top layerof asphalt.3.1.3 1-day air temperaturethe average of the minimumand maximum air temperatures at the location of testing duringthe previous complete
8、 24-hour day.4. Summary of Test Method4.1 Input Data Elements:4.1.1 IR TemperatureThe exposed surface temperature ofan asphalt pavement is measured, preferably with an infrared(IR) temperature sensing device that is properly calibrated.4.1.2 Time of DayThe time of day the temperature mea-surement ta
9、kes place is recorded.4.1.3 1-Day TemperatureThe average 1-day air tempera-ture of the previous complete 24-hour day is determined andrecorded.4.1.4 Pavement DepthThe depth at which an estimate ofthe asphalt layer temperature is required is specified.4.2 The input data elements are entered into a re
10、gressionformula that predicts the temperature within the asphalt pave-ment at depth.5. Significance and Use5.1 Analysis of deflection data from asphalt pavementsalmost always requires that the raw deflections or the analysisresults from the load-deflection data be adjusted for the effectsof pavement
11、 surface course temperature. Measuring the tem-perature at-depth normally requires that a hole be drilled intothe pavement, partially filled with fluid, and the temperaturemeasured with a hand-held device.Alternatively, thermistors orother temperature instrumentation may be permanently in-stalled at
12、 various locations.5.2 Current deflection testing equipment is often equippedwith surface temperature sensing devices, for example aninfrared thermometer that measures the surface temperature at1This test method is under the jurisdiction of ASTM Committee E17 onVehicle-Pavement Systems and is the di
13、rect responsibility of Subcommittee E17.41on Pavement Management.Current edition approved Aug. 1, 2006. Published August 2006. Originallyapproved in 2006. Last previous edition approved in 2006 as D 7228 06.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer
14、 Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Available from American Association of State Highway and TransportationOfficials (AASHTO), 444 N. Capitol St., NW, Suite 249, Washington, DC 20001.4Avail
15、able from Federal Highway Administration (FHWA) 400 Seventh Street,SW Washington, DC 20590.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.every test location. To adequately adjust the deflection ordeflection results for the effects
16、of temperature, the temperatureat some depth must be known.5.3 This test method provides a means of estimating thetemperature at-depth from the pavement surface temperature,the time of day, the previous days high and low air tempera-tures, and the desired depth where the temperature is to beestimate
17、d. Utilization of this method results in a significantsavings in time over the conventional practice of manuallydrilling holes into the pavement, and it results in a significantincrease in the volume of temperature data (one pavementtemperature for each test point) and the ability to recordtemperatu
18、re variations between test points.6. Apparatus6.1 Surface Temperature Measurement DeviceThe sur-face temperature measurement device can be an infrared (IR)thermometer mounted on a deflection device, a hand-held IRthermometer, or a surface contact thermometer. The tempera-ture measurement device shou
19、ld be calibrated according to themanufacturers recommendations.7. Calculation7.1 BELLS MethodThe BELLS method for productiontesting (called BELLS3 in other publications) has been derivedbased on temperature measurements taken on pavement sur-faces that have been shaded for a short period (less than
20、oneminute) of time. The following equation is valid for approxi-mately 30 seconds of shading:Td5 0.95 1 0.892 * IR 1 $log d! 1.25%$0.448 * IR1 0.621 * 1day! 1 1.83 * sin hr18 15.5!%1 0.042 * IR * sin hr18 13.5! (1)where:Td= pavement temperature at depth d, C,IR = infrared surface temperature, C,log
21、= base 10 logarithm,d = depth at which asphalt temperature is to be pre-dicted, mm,1-day = average of the minimum and maximum air tem-peratures, C, for the previous complete 24-hourday before testing,sin = sin function in 18-hour clock system, with 2pradians equal to one 18-hour cycle, andhr18= time
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