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Extreme solutions in control of moisture transport in concrete carbonation
Sergey A. Timoshin
*
, Toyohiko Aiki
*
Corresponding author for this work
Fujian Province University Key Laboratory of Computational Science
Huaqiao University
RAS - Matrosov Institute for System Dynamics and Control Theory, Siberian Branch
Japan Women's University
Research output
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Contribution to journal
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Article
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peer-review
5
Citations (Scopus)
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Engineering
Carbonation
100%
Carbonation Process
33%
Control Constraint
33%
Control System
66%
Diffusion Equation
33%
Extreme Point
33%
Hysteresis
100%
Hysteresis Effect
33%
Moisture Transport
100%
Monotonicity
33%
Obtains
33%
Chemistry
Analytical Method
100%
Aqueous Solution
100%
Computer Simulation
100%
Diffusion
100%
Procedure
100%
Earth and Planetary Sciences
Accounting
33%
Assumption
33%
Constraint
33%
Control System
66%
Diffusion
33%
Investigation
33%
Moisture
100%
Proximity
33%
State
100%
Mathematics
Constraints
25%
Control
100%
Control System
50%
Diffusion Equation
25%
Extreme Points
25%
Hysteresis
100%
Modeling
25%
Monotonicity
25%
Ordinary Differential Equation
25%
Physics
Diffusivity
25%
Hysteresis
100%
Operators (Mathematics)
25%