AASHTO PP 70-2014 Standard Practice for Collecting the Transverse Pavement Profile.pdf
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1、Standard Practice for Collecting the Transverse Pavement Profile AASHTO Designation: PP 70-14 (2016)1 Release: Group 1 (April 2016) American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-5a PP 70-1 AASHTO Standard Practic
2、e for Collecting the Transverse Pavement Profile AASHTO Designation: PP 70-14 (2016)1Release: Group 1 (April 2016) 1. SCOPE 1.1. This practice outlines a method for collecting pavement transverse profile, including its relationship to a level horizontal reference in pavement surfaces utilizing autom
3、ated measurement devices. The profile can subsequently be used to quantify cross slope and pavement distresses such as transverse deformation, rut characteristics, water entrapment, or edge drop-off. Detailed specifications are not included for equipment or instruments used to make the measurements.
4、 Equipment that can be adequately validated to meet the functionality stipulated herein is considered acceptable. The goal is to achieve a standardized data set that supports a wide variety of interpretation methods to characterize pavement transverse profile characteristics in order to capture prop
5、erties of engineering significance, without unduly restricting innovative methods. 1.2. This standard addresses data collection utilizing a measurement device traveling at or near the posted speed limit. 1.3. This practice does not purport to address all of the safety concerns, if any, associated wi
6、th its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations related to and prior to its use. 2. TERMINOLOGY 2.1. Definitions: 2.1.1. report intervalthe travel distance between the rep
7、orted data. 2.1.2. transverse profilevertical deviations of the pavement surface from a level horizontal reference perpendicular to the lane direction of travel. 2.1.3. transverse measurement widthdistance between the first and last measurement points in the transverse profile. 2.1.4. vertical measu
8、rement resolutionthe smallest distance of measurement in the vertical axis stored by the measure device. 2.1.5. vertical measurement accuracythe difference between the vertical distance reported by the measuring device and a standard reference measurement. 3. SIGNIFICANCE AND USE 3.1. This standard
9、provides guidelines for collecting transverse pavement profile for the subsequent extraction of selected pavement characteristics such as rut, cross slope, deformation, and edge drop-off. 2016 by the American Association of State Highway and Transportation Officials. All rights reserved. Duplication
10、 is a violation of applicable law.TS-5a PP 70-2 AASHTO 3.2. Two data reporting intervals are to be selected based on the level of detail required in the subsequent analysis. The longer interval is typical of network data collection, while the shorter is more often related to project-level data acqui
11、sition. 4. DATA COLLECTION 4.1. General GuidelinesEach agency shall designate the lane(s) and direction(s) of travel to be surveyed or rated based on sound engineering principles and management needs within the agency. The following guidelines are recommended as minimums to provide a necessary datab
12、ase and for long-term uniformity. 4.2. The report interval between collected transverse profiles should not exceed 3.0 m (10 ft) for network-level collection and 0.5 m (1.5 ft) for project-level collection. 4.3. For network-level collection, at least one direction should be surveyed on undivided roa
13、ds and both directions on divided highways. On undivided roads, measurements on the side carrying the heaviest truck loads are desired, when this knowledge is available in advance of the survey. 4.4. It is desirable to survey the same direction of travel and the same lane during subsequent survey cy
14、cles. 4.5. The transverse profile shall have a minimum width of 4.0 m (13 ft) for detecting distresses in the lane (between the longitudinal lane markings, when present) and 4.25 m (14 ft) if interpretation of edge drop-off is desired. The extra width should be on the shoulder side of the lane, beyo
15、nd the edge marking. These widths include 300 mm (12 in.) beyond the normal requirements to account for vehicle wander. Data measured outside the location of interest may be discarded before reporting if a lane identification algorithm is employed at the collection stage. Note 1The technology for hi
16、gh resolution transverse profile data collection is advancing rapidly. Currently, the most widely deployed technology involves mid-angle optical methods that are subject to providing false or no data due to the nature of the surface. Highly reflective surfaces such as rail tracks, manholes, steel pa
17、tch plates, or ponding water cause measurement difficulty. Different pavement surface types also require the camera to adjust, which can take several potential profiles to recover. These issues typically involve a limited portion of the pavement and can be dropped without a significant impact on the
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