2010•GeoFlorida 2010Requires access

Design of Effective Subsurface Drainage for Flexible Pavement

Robert Y. K. Liang, Madhar Taamneh

Open publisher page 6 citations

Abstract

In this paper, numerical simulations of subsurface drainage in a flexible pavement system were conducted using DRIP program and 2-D SEEP/W program. A baseline pavement section profile was selected to represent typical flexible pavement design incorporating drainable base course. Using the baseline pavement cross section, a series of parametric numerical simulation studies were conducted to evaluate the influencing factors on the subsurface drainage efficiency. The predicted time to drain 50% of free water, computed by DRIP program and 2-D SEEP/W program, was compared for all cases investigated. The assumptions made in DRIP program, namely, seepage in fully saturated base course, seemed to make the predicted time to drain 50% of free water in base course shorter than that predicted by SEEP/W program, which takes into account of unsaturated seepage condition in the base materials. At the end of the paper, insights gained from numerical simulations using SEEP/W were given to enable design of effective subsurface drainage system in a flexible pavement.

About this research paper

What this paper is about

In this paper, numerical simulations of subsurface drainage in a flexible pavement system were conducted using DRIP program and 2-D SEEP/W program. A baseline pavement section profile was selected to represent typical flexible pavement design incorporating drainable base course. Using the baseline pavement cross section, a series of parametric numerical simulation studies were conducted to evaluate the influencing factors on the subsurface drainage efficiency. The predicted time to drain 50% of free water, computed by DRIP program and 2-D SEEP/W program, was compared for all cases investigated. The assumptions made in DRIP program, namely, seepage in fully saturated base course, seemed to make the predicted time to drain 50% of free water in base course shorter than that predicted by SEEP/W program, which takes into account of unsaturated seepage condition in the base materials. At the end of the paper, insights gained from numerical simulations using SEEP/W were given to enable design of effective subsurface drainage system in a flexible pavement.

Why it matters

OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In this paper, numerical simulations of subsurface drainage in a flexible pavement system were conducted using DRIP program and 2-D SEEP/W program. A baseline pavement section profile was selected to represent typical flexible pavement design incorporating drainable base course. Using the baseline pavement cross section, a series of parametric numerical simulation studies were conducted to evaluate the influencing factors on the subsurface drainage efficiency. The predicted time to drain 50% of free water, computed by DRIP program and 2-D SEEP/W program, was compared for all cases investigated. The assumptions made in DRIP program, namely, seepage in fully saturated base course, seemed to make the predicted time to drain 50% of free water in base course shorter than that predicted by SEEP/W program, which takes into account of unsaturated seepage condition in the base materials. At the end of the paper, insights gained from numerical simulations using SEEP/W were given to enable design of effective subsurface drainage system in a flexible pavement.

Key concepts: Petroleum seep, Drainage, Parametric statistics, Geotechnical engineering, Base (topology), Environmental science, Subsurface flow, Geology

Related papers

Back to paper searchBrowse research topicsOriginal source
Design of Effective Subsurface Drainage for Flexible Pavement — Research Paper | ScholarLens