Climatic Effects on Pavement and Geotechnical Infrastructure

Climatic Effects on Pavement and Geotechnical Infrastructure
Author: Jenny Liu (Civil engineer)
Publisher:
Total Pages: 0
Release: 2014
Genre: Earthwork
ISBN: 9780784413326

This collection contains 22 peer-reviewed papers on climatic effects on pavement and geotechnical infrastructure presented at the 2013 International Symposium on Climatic Effects on Pavement and Geotechnical Infrastructure, held in Fairbanks, Alaska, August 4-7, 2013.

Quantifying the Effects of Climate Change on Pavement Performance Prediction Using AASHTOWoware Pavement ME Design

Quantifying the Effects of Climate Change on Pavement Performance Prediction Using AASHTOWoware Pavement ME Design
Author: Md Shahjalal Chowdhury
Publisher:
Total Pages: 77
Release: 2020
Genre: Climatic changes
ISBN:

"Climate change is one of the most concerning global issues and has the potential to influence every aspect of human life. Like different components of society, it can impose significant adverse impacts on pavement infrastructure. Although several research efforts have focused on studying the effects of climate change on natural and built systems, its impact on pavement performance has not been studied as extensively. The primary objectives of this thesis research was to quantify the effect of temperature changes on flexible pavement response and performance prediction using the AASHTOWare Pavement ME Design (PMED), and quantify the effects of Local Calibration Factors (LCFs) used by different state highway agencies in the United States on predicted pavement performance. Particular emphasis was given to LCF values used by the Idaho Transportation Department. The climatic data, as well as LCFs corresponding to several different states, were used to identify how different LCF values affect pavement performance prediction. The effects of atmospheric temperature changes on pavement temperature and Asphalt Concrete (AC) layer modulus were studied by analyzing the intermediate files generated by PMED. Finally, the impact of temperature change on AC dynamic modulus (E*) was also analyzed to link the PMED-predicted distresses with asphalt mix properties. Historical climatic data was obtained from the Modern-Era Retrospective Analysis for Research and Applications (MERRA) database. Projected data considered to simulate the temperature changes in the future were generated by adopting two different approaches: (1) Manual alteration of historical temperature distribution data to represent scenarios with increased mean and standard deviation values; and (2) Use of temperature data projected by established Global Climate Models (GCM). All different climatic scenarios were used in PMED along with a standard pavement section, and the distresses predicted over the design life of the pavement were compared. Simulation results showed consistent increase in Total Pavement rutting and AC rutting with increasing air temperatures. The effect of temperature increase on AC thermal cracking predicted by PMED demonstrated inconsistent trends. In contrast, the projected temperature increase had no significant effect on bottom-up fatigue cracking for the chosen study locations. It was found that the impact of changed air temperatures can be different for pavement sections constructed in different geographic locations. Moreover, the analysis confirmed that the Local Calibration Factors (LCFs) established by different state highway agencies played a major role in governing the effect of future temperature increase on predicted pavement performance. Through an extensive stud."--Boise State University ScholarWorks.

Structural Behavior of Asphalt Pavements

Structural Behavior of Asphalt Pavements
Author: Lijun Sun
Publisher: Butterworth-Heinemann
Total Pages: 1072
Release: 2016-08-09
Genre: Technology & Engineering
ISBN: 0128028939

Structural Behavior of Asphalt Pavements provides engineers and researchers with a detailed guide to the structural behavioral dynamics of asphalt pavement including: pavement temperature distribution, mechanistic response of pavement structure under the application of heavy vehicles, distress mechanism of pavement, and pavement deterioration performance and dynamic equations. An authoritative guide for understanding the key mechanisms for creating longer lasting pavements, Structural Behavior of Asphalt Pavements describes the intrinsic consistency between macroscopic performance and microscopic response, structure and material, as well as global and local performances, and demonstrates the process of pavement analyses and designs, approaching science from empirical analyses. Analyzes the external and internal factors influencing pavement temperature field, and provide a review of existing pavement temperature prediction models Introduces a “Bridge Principle through which pavement performance and fatigue properties are consolidated Defines the intrinsic consistency between macroscopic performance and microscopic response, structure and material, as well as global and local performance Summaries the mechanistic response of pavement structure under the application of heavy vehicle, distress mechanism of pavement, pavement deterioration performance and dynamic equations, and life cycle analysis of pavement

Effects of Subsurface Drainage on Pavement Performance

Effects of Subsurface Drainage on Pavement Performance
Author: Kathleen Theresa Hall
Publisher: Transportation Research Board
Total Pages: 201
Release: 2007
Genre: Pavements
ISBN: 0309099021

NCHRP Report 583 explores the effects of subsurface drainage features on pavement performance through a program of inspection and testing of the subsurface drainage features present in the Long-Term Pavement Performance SPS-1 (flexible hot-mix asphalt pavement) and SPS-2 (rigid portland cement concrete pavement) field sections.

Cooling the Cities

Cooling the Cities
Author: Matheos Santamouris
Publisher: Presses des MINES
Total Pages: 61
Release: 2004
Genre: Architecture and climate
ISBN: 2911762541

Heat Islands

Heat Islands
Author: Lisa Mummery Gartland
Publisher: Routledge
Total Pages: 216
Release: 2012-05-16
Genre: Architecture
ISBN: 1136564209

Heat islands are urban and suburban areas that are significantly warmer than their surroundings. Traditional, highly absorptive construction materials and a lack of effective landscaping are their main causes. Heat island problems, in terms of increased energy consumption, reduced air quality and effects on human health and mortality, are becoming more pressing as cities continue to grow and sprawl. This comprehensive book brings together the latest information about heat islands and their mitigation. The book describes how heat islands are formed, what problems they cause, which technologies mitigate heat island effects and what policies and actions can be taken to cool communities. Internationally renowned expert Lisa Gartland offers a comprehensive source of information for turning heat islands into cool communities. The author includes sections on cool roofing and cool paving, explains their benefits in detail and provides practical guidelines for their selection and installation. The book also reviews how and why to incorporate trees and vegetation around buildings, in parking lots and on green roofs.

Temperature Predictions and Adjustment Factors for Asphalt Pavement

Temperature Predictions and Adjustment Factors for Asphalt Pavement
Author: Erland O. Lukanen
Publisher:
Total Pages: 86
Release: 2000
Genre: Pavements, Asphalt
ISBN:

This report presents the results of an analysis of the response that deflections and backcalculated asphalt moduli have to the pavement temperature. The study used deflection and temperature data from 40 sites monitored in the Seasonal Monitoring Program of the Long Term Pavement Performance (LTPP) program. The report presents improved methods of estimating the temperature within an asphalt pavement based on the measurement procedures used for the LTPP program. The data necessary to estimate the temperature within the asphalt included the surface temperature, time of day, depth below the surface, and the average air temperature from the previous day.