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Pavement Drainage: Theory and Practice

Pavement Drainage: Theory and Practice
Author: G L Sivakumar Babu
Publisher: CRC Press
Total Pages: 239
Release: 2019-08-26
Genre: Science
ISBN: 1351135929

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SUMMARY This book provides complete coverage of surface and subsurface drainage of all types of pavements for highways, urban roads, parking lots, airports, and container terminals. It provides up-to-date information on the principles and technologies for designing and building drainage systems and examines numerous issues, including maintenance and designing for flood events. Practical considerations and sophisticated analysis, such the use of the finite element method and unsaturated soil mechanics, anisotropy and uncertainties, are presented. This book allows civil engineers to make the best use of their resources to provide cost effective and sustainable pavements. Features Presents a holistic consideration of drainage with respect to pavement performance. Includes numerous practical case studies. Examines flooding and the impacts of climate change. Includes PowerPoint slides which include quizzes, schematics, figures, and tables.


Geotechnics for Transportation Infrastructure

Geotechnics for Transportation Infrastructure
Author: Ravi Sundaram
Publisher: Springer
Total Pages: 0
Release: 2020-08-15
Genre: Science
ISBN: 9789811367038

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This book presents selected papers from the International Symposium on Geotechnics for Transportation Infrastructure (ISGTI 2018). The research papers cover geotechnical interventions for the diverse fields of policy formulation, design, implementation, operation and management of the different modes of travel, namely road, air, rail and waterways. This book will be of interest to academic and industry researchers working in transportation geotechnics, as also to practicing engineers, policy makers, and civil agencies.


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

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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.


Performance Evaluation of Drained Pavement Structures

Performance Evaluation of Drained Pavement Structures
Author: T. S. Rutkowski
Publisher:
Total Pages: 46
Release: 1998
Genre: Pavements, Concrete
ISBN:

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This research study focused on positive drainage of pavement structures. The open-graded base course concepts included non-stabilized, asphalt cement concrete (AC) stabilized and portland cement concrete (PCC) stabilized. Drainage systems included pipe in trenches, fin-type, pipe beneath transverse joints and retrofitted pipe. Non-drainage elements included 3.05 m (14 ft) wide driving lanes, and a 30.48 cm (12 in.) layer of "select embankment". Twelve projects were monitored, both portland cement concrete surface and asphaltic concrete surface. Measurement surveys included Pavement Distress Index (PDI), transverse joint faulting, International Roughness Index (IRI) ride quality, and coring at the transverse joints.


Pavement Subsurface Drainage Systems

Pavement Subsurface Drainage Systems
Author: Barry Rodney Christopher
Publisher: Transportation Research Board
Total Pages: 56
Release: 1997
Genre: Technology & Engineering
ISBN: 9780309060158

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This synthesis will be of interest to geologists; hydrologists; geotechnical, pavement, construction, and maintenance engineers; and researchers. State department of transportation (DOT) program managers and administrators will also find it of interest. The synthesis describes the current state of the practice for the design, construction, and maintenance of pavement subsurface drainage systems. It provides information on the positive effects of good subsurface drainage and the negative effects of poor subsurface drainage on pavement surfaces. This report of the Transportation Research Board presents data obtained from a review of the literature and a survey of the state DOTs. It is a supplemental update to NCHRP Synthesis of Highway Practice 96, Pavement Subsurface Drainage Systems (1982). The synthesis provides a supplement to design issues not found in Synthesis 96, but faced by current designers, e.g., type and quality of aggregate, compaction requirements for open-graded aggregates, asphalt and cement binders, and use of geosynthetics. In addition, it describes the effects of design, construction, and maintenance decisions on the performance of pavement subsurface drainage systems.


Evaluating Roadway Subsurface Drainage Practices

Evaluating Roadway Subsurface Drainage Practices
Author: Halil Ceylan
Publisher:
Total Pages: 94
Release: 2013
Genre: Pavements
ISBN:

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The bearing capacity and service life of a pavement is affected adversely by the presence of undrained water in the pavement layers. In cold winter climates like in Iowa, this problem is magnified further by the risk of frost damage when water is present. Therefore, well-performing subsurface drainage systems form an important aspect of pavement design by the Iowa Department of Transportation (DOT). However, controversial findings are also reported in the literature regarding the benefits of subsurface drainage. The goal of this research was not to investigate whether subdrains are needed in Iowa pavements, but to conduct an extensive performance review of primary interstate pavement subdrains in Iowa, determine the cause of the problem if there are drains that are not functioning properly, and investigate the effect of poor subdrain performance due to improper design, construction, and maintenance on pavement surface distresses, if any. An extensive literature review was performed covering national-level and state-level research studies mainly focusing on the effects of subsurface drainage on performance of asphalt and concrete pavements. Several studies concerning the effects of a recycled Portland cement concrete (RPCC) subbase on PCC pavement drainage systems were also reviewed. A detailed forensic test plan was developed in consultation with the project technical advisory committee (TAC) for inspecting and evaluating the Iowa pavement subdrains. Field investigations were conducted on 64 selected (jointed plain concrete pavement/JPCP and hot-mix asphalt/HMA) pavement sites during the fall season of 2012 and were mainly focused on the drainage outlet conditions. Statistical analysis was conducted on the compiled data from field investigations to further investigate the effect of drainage on pavement performance. Most Iowa subsurface drainage system outlet blockage is due to tufa, sediment, and soil. Although higher blockage rates reduce the flow rate of water inside outlet pipes, it does not always stop water flowing from inside the outlet pipe to outside the outlet pipe unless the outlet is completely blocked. Few pavement surface distresses were observed near blocked subsurface drainage outlet spots. More shoulder distresses (shoulder drop or cracking) were observed near blocked drainage outlet spots compared to open ones. Both field observations and limited performance analysis indicate that drainage outlet conditions do not have a significant effect on pavement performance. The use of RPCC subbase in PCC pavements results in tufa formation, a primary cause of drainage outlet blockage in JPCP. Several useful recommendations to potentially improve Iowa subdrain performance, which warrant detailed field investigations, were made.


Evaluation of Typical Pavement Drainage Systems Using Open Graded Bituminous Aggregate Mixture Drainage Layers

Evaluation of Typical Pavement Drainage Systems Using Open Graded Bituminous Aggregate Mixture Drainage Layers
Author: Ernest J. Barenberg
Publisher:
Total Pages: 88
Release: 1974
Genre: Aggregates (Building materials)
ISBN:

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This study was aimed at evaluating the performance of pavement drainage systems that can be used in the State of Illinois using locally available aggregate sources for construction of these drainage systems. The study was limited to investigations on the use of open-graded, hot-mixed bituminous aggregate mixtures (OGBAM), for use in the pavement drainage system. A preliminary investigation was carried out in the laboratory to evaluate the permeability and the stability of the OGBAM. Specimens were prepared according to the procedures given by ASTM D 1559, Resistance to Plastic Flow of Bituminous Mixtures Using Marshall Apparatus. Permeability test (using a constant-head permeameter that allowed the measurement of permeability at low heads) and stability test were performed on the same specimen. Using the results of the preliminary investigations, six test pavements (4 feet long) incorporating different design concepts were tested in the University of Illinois Test Track. Dynamic loading was applied to the test pavements and water was passed through the OGBAM drainage layers to simulate surface and lateral infiltration. Permeability tests at constant head were carried out regularly on the pavement test sections. The progress of rutting in the test pavements was also recorded. Results of these limited tests indicate that OGBAM possess a very high order of permeability, and that care must be taken to prevent the migration of subgrade fines into the OGBAM layers for satisfactory performance of OGBAM layers with regards to drainage. The report outlines some of the methods that can be used to ensure satisfactory performance of pavements using OGBAM layers.


Highway Subdrainage Design

Highway Subdrainage Design
Author: Lyle K. Moulton
Publisher:
Total Pages: 180
Release: 1980
Genre: Drainage
ISBN:

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