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Pervious concrete mix optimization for sustainable pavement solution (CROSBI ID 654949)

Prilog sa skupa u zborniku | izvorni znanstveni rad | međunarodna recenzija

Barišić, Ivana ; Galić, Mario ; Netinger Grubeša, Ivanka Pervious concrete mix optimization for sustainable pavement solution // IOP conference series. Earth and environmental science. 2017. doi: 10.1088/1755-1315/90/1/012091

Podaci o odgovornosti

Barišić, Ivana ; Galić, Mario ; Netinger Grubeša, Ivanka

engleski

Pervious concrete mix optimization for sustainable pavement solution

In order to fulfill requirements of sustainable road construction, new materials for pavement construction are investigated with the main goal to preserve natural resources and achieve energy savings. One of such sustainable pavement material is pervious concrete as a new solution for low volume pavements. To accommodate required strength and porosity as the measure of appropriate drainage capability, four mixtures of pervious concrete are investigated and results of laboratory tests of compressive and flexural strength and porosity are presented. For defining the optimal pervious concrete mixture in a view of aggregate and financial savings, optimization model is utilized and optimal mixtures defined according to required strength and porosity characteristics. Results of laboratory research showed that comparing single- sized aggregate pervious concrete mixtures, coarse aggregate mixture result in increased porosity but reduced strengths. The optimal share of the coarse aggregate turn to be 40.21%, the share of fine aggregate is 49.79% for achieving required compressive strength of 25 MPa, flexural strength of 4.31 MPa and porosity of 21.66%.

Pervious concrete ; Pavement ; Composition ; Optimization

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Podaci o prilogu

012091

2017.

objavljeno

10.1088/1755-1315/90/1/012091

Podaci o matičnoj publikaciji

Energy Management of Municipal Transportation Facilities and Transport - EMMFT 2017

Bristol: IOP Publishing

1755-1315

Podaci o skupu

Conference on Energy Management of Municipal Transportation Facilities and Transport (EMMFT)

pozvano predavanje

10.04.2017-13.04.2017

Khabarovsk, Ruska Federacija

Povezanost rada

nije evidentirano

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