Experimental appraisal for characterizing laboratorial and field performance parameters of pervious concrete pavement
Author(s): |
Rafael Batezini
José Tadeu Balbo Liv Haselbach Filipe de Oliveira Curvo Guilherme Nunes Kalleder Beatriz Sayuri Sato Domênico Zema |
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Medium: | journal article |
Language(s): | Portuguese |
Published in: | Ambiente Construído, April 2021, n. 2, v. 21 |
Page(s): | 177-194 |
DOI: | 10.1590/s1678-86212021000200520 |
Abstract: |
Loratorial tests with pervious concrete comprised porosity and hydraulic conductivity as well as mechanical parameters as compressive, indirect tensile and bending strengths besides assessing its static and dynamic elasticity moduli. Later, a pervious sidewalk area of 1.0 x 8.65 square meters was built in order to determine the variation of the infiltration rate along time; over such experimental sidewalk, impact deflection tests performed allowed to assess back calculated moduli of the pervious concrete layer, resulting 33% to 13% lower than conventional concretes. A mechanistic analysis allowed to estimate the required thickness of concrete for heavy- and light-traffic areas. Tests disclosed no significant difference among the different concrete mixes, with 25% porosity and 0,1 cm/s permeability. Initial sidewalk infiltration rate of 0.5 cm/s dropped 50% four months after construction. It was verified that pervious concrete thicknesses for trucks and buses use are far higher than conventional concrete pavements. |
Copyright: | © 2021 Rafael Batezini, José Tadeu Balbo, Liv Haselbach, Filipe de Oliveira Curvo, Guilherme Nunes Kalleder, Beatriz Sayuri Sato, Domênico Zema |
License: | This creative work has been published under the Creative Commons Attribution 4.0 International (CC-BY 4.0) license which allows copying, and redistribution as well as adaptation of the original work provided appropriate credit is given to the original author and the conditions of the license are met. |
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data sheet - Reference-ID
10603006 - Published on:
17/04/2021 - Last updated on:
02/06/2021