Evaluation of pavement skid resistance using high speed texture measurement

Skid resistance is an important parameter for highway designs, construction, management, maintenance and safety. The purpose of this manuscript is to propose the correlation between skid resistance, which is measured as skid resistance trailer, and mean profile depth (MPD) or the macro surface textu...

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Main Authors: Jay N. Meegoda, Shengyan Gao
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2015-12-01
Series:Journal of Traffic and Transportation Engineering (English ed. Online)
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2095756415000823
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spelling doaj-d3ceca2b63d140e6aa96a632b8d3c7352021-02-02T04:56:56ZengKeAi Communications Co., Ltd.Journal of Traffic and Transportation Engineering (English ed. Online)2095-75642015-12-012638239010.1016/j.jtte.2015.09.001Evaluation of pavement skid resistance using high speed texture measurementJay N. MeegodaShengyan GaoSkid resistance is an important parameter for highway designs, construction, management, maintenance and safety. The purpose of this manuscript is to propose the correlation between skid resistance, which is measured as skid resistance trailer, and mean profile depth (MPD) or the macro surface texture, which is measured by vehicle mounted laser, so that highway agencies can predict the skid resistance of pavement without the use of expensive and time consuming skid resistance trailer, which also causes disruption of traffic in use. In this research skid numbers and MPD from 5 new asphalt pavements and 4 old asphalt pavements were collected using a locked wheel skid trailer and a vehicle mounted laser. Using the data collected, a correlation between the skid number (SN40R) collected by locked wheel skid tester and the texture data or MPD collected by a vehicle mounted laser operating at highway speeds was developed. The proposed correlation for new pavements was positive for MPD values less than 0.75 mm to reach a peak SN40R value, then there was a negative correlation as the MPD increases until the MPD value was equal to 1.1 mm and beyond the MPD value of 1.1 mm to the maximum value of 1.4 mm, SN40R value remained almost constant. There were significant data scatter for the MPD value of 0.8 mm. To explain these results, water film thickness during the friction test was calculated and the critical MPD was defined. The effect of sealed water pool on the SN40R was discussed. The test result showed a similar trend for older asphalt pavements, but with lower SN40R values due to the polishing of pavement micro-texture by traffic. Hence, a reduction factor was proposed for older pavements based on cumulative traffic volume for the above correlation to predict the skid resistance of older pavements.http://www.sciencedirect.com/science/article/pii/S2095756415000823Skid resistanceHigh speed laserPavement textureCumulative traffic volumeLocked wheel skid trailerMean profile depth
collection DOAJ
language English
format Article
sources DOAJ
author Jay N. Meegoda
Shengyan Gao
spellingShingle Jay N. Meegoda
Shengyan Gao
Evaluation of pavement skid resistance using high speed texture measurement
Journal of Traffic and Transportation Engineering (English ed. Online)
Skid resistance
High speed laser
Pavement texture
Cumulative traffic volume
Locked wheel skid trailer
Mean profile depth
author_facet Jay N. Meegoda
Shengyan Gao
author_sort Jay N. Meegoda
title Evaluation of pavement skid resistance using high speed texture measurement
title_short Evaluation of pavement skid resistance using high speed texture measurement
title_full Evaluation of pavement skid resistance using high speed texture measurement
title_fullStr Evaluation of pavement skid resistance using high speed texture measurement
title_full_unstemmed Evaluation of pavement skid resistance using high speed texture measurement
title_sort evaluation of pavement skid resistance using high speed texture measurement
publisher KeAi Communications Co., Ltd.
series Journal of Traffic and Transportation Engineering (English ed. Online)
issn 2095-7564
publishDate 2015-12-01
description Skid resistance is an important parameter for highway designs, construction, management, maintenance and safety. The purpose of this manuscript is to propose the correlation between skid resistance, which is measured as skid resistance trailer, and mean profile depth (MPD) or the macro surface texture, which is measured by vehicle mounted laser, so that highway agencies can predict the skid resistance of pavement without the use of expensive and time consuming skid resistance trailer, which also causes disruption of traffic in use. In this research skid numbers and MPD from 5 new asphalt pavements and 4 old asphalt pavements were collected using a locked wheel skid trailer and a vehicle mounted laser. Using the data collected, a correlation between the skid number (SN40R) collected by locked wheel skid tester and the texture data or MPD collected by a vehicle mounted laser operating at highway speeds was developed. The proposed correlation for new pavements was positive for MPD values less than 0.75 mm to reach a peak SN40R value, then there was a negative correlation as the MPD increases until the MPD value was equal to 1.1 mm and beyond the MPD value of 1.1 mm to the maximum value of 1.4 mm, SN40R value remained almost constant. There were significant data scatter for the MPD value of 0.8 mm. To explain these results, water film thickness during the friction test was calculated and the critical MPD was defined. The effect of sealed water pool on the SN40R was discussed. The test result showed a similar trend for older asphalt pavements, but with lower SN40R values due to the polishing of pavement micro-texture by traffic. Hence, a reduction factor was proposed for older pavements based on cumulative traffic volume for the above correlation to predict the skid resistance of older pavements.
topic Skid resistance
High speed laser
Pavement texture
Cumulative traffic volume
Locked wheel skid trailer
Mean profile depth
url http://www.sciencedirect.com/science/article/pii/S2095756415000823
work_keys_str_mv AT jaynmeegoda evaluationofpavementskidresistanceusinghighspeedtexturemeasurement
AT shengyangao evaluationofpavementskidresistanceusinghighspeedtexturemeasurement
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