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Issue Date
Title
Author(s)
2023
A mathematical model to predict the porosity and compressive strength of pervious concrete based on the aggregate size, aggregate‑to‑cement ratio and compaction effort
Sathushka Heshan, W.
;
Thirugnasivam, S.
;
Daniel Niruban, S.
;
Sathiparan, N.
2023
Numerical Simulation of ChlorideI on Ingression in Mortar incorporating the Effect of ITZ using an integrated COMSOL-IPHREEQC Framework
Krishnya, S.
;
Elakneswaran, Y.
;
Yoda, Y.
;
Kitagaki, R.
2023
Development and verification of an integrated hydration, geochemical and transport model for the hydrated cement paste exposed to an aggressive chemical environment
Krishnya, S.
;
Kopitha, K.
;
Yoda, Y.
;
Kitagaki, R.
;
Elakneswaran, Y.
2022
Investigating the hydration characteristics of a new composite cementitious binder containing of slag and calcite
Chuang, L.
;
Krishnya, S.
;
Ogino, M.
;
Owaki, E.
;
Elakneswaran, Y.
2022
Influence of aggregate gradation and compaction on compressive strength and porosity characteristics of pervious concrete
Anburuvel, A.
;
Daniel Niruban, S.
Discover
Author
3
Elakneswaran, Y.
3
Krishnya, S.
2
Daniel Niruban, S.
2
Kitagaki, R.
2
Yoda, Y.
1
Anburuvel, A.
1
Chuang, L.
1
Kopitha, K.
1
Ogino, M.
1
Owaki, E.
.
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Subject
3
Hydration products
2
Chloride ion diffusion
2
Compressive strength
2
COMSOL-IPHREEQC
2
Pervious concrete
1
Aggregate gradation
1
Aggregate size
1
Aggregate-to-cement ratio
1
Blast furnace slag (BFS)
1
Calcite
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Date issued
3
2023
2
2022
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