Transport Properties of Concrete: Modelling the Durability of Structures: Woodhead Publishing Series in Civil and Structural Engineering
Autor Peter A. Claisseen Limba Engleză Hardback – 6 noi 2020
- Includes a new chapter on modelling the durability of concrete structures showing how both diffusion and pressure driven flow should be included
- Covers the problems that occur when carrying out transport tests on concrete incorporating both traditional and newer cement replacements
- Shows how properties such as permeabilty which are needed for modelling may be derived from in situ tests on structures
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Specificații
ISBN-13: 9780128202494
ISBN-10: 0128202491
Pagini: 328
Ilustrații: Approx. 200 illustrations
Dimensiuni: 152 x 229 x 22 mm
Greutate: 0.61 kg
Ediția:2
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Civil and Structural Engineering
ISBN-10: 0128202491
Pagini: 328
Ilustrații: Approx. 200 illustrations
Dimensiuni: 152 x 229 x 22 mm
Greutate: 0.61 kg
Ediția:2
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Civil and Structural Engineering
Public țintă
Based on your assessment of the current edition and planned revision, who is the audience for the project? Mostly the research community.Cuprins
1. The transport properties of concrete and the equations that describe them
2. Computer models to predict the transport processes in concrete
3. Surface tests to determine transport properties of concrete - I: the tests
4. Surface tests to determine transport properties of concrete - II: analytical models to calculate permeability
5. Surface tests to determine transport properties of concrete - III: measuring gas permeability
6. Measurements of gas migration in concrete
7. Water vapour and liquid permeability measurements in concrete
8. Measurement of porosity as a predictor of the transport properties of concrete
9. Factors affecting the measurement of the permeability of concrete
10. Electrical tests to analyse the transport properties of concrete - I: modelling diffusion and electromigration
11. Electrical tests to analyse the transport properties of concrete - II: using a neural network model to derive diffusion coefficients
12. Electrical tests to analyse the fundamental transport properties of concrete - III: modelling tests without applied voltages
13. Applications using measured values of the transport properties of concrete - I: predicting the durability of reinforced concrete
14. Applications using measured values of the transport properties of concrete - II: modelling the effect of gas pressure
15. Applications using measured values of the transport properties of concrete - III: predicting the transport of liquids through concrete barriers for waste containment
16. Applications using measured vaules of the transport properties of concrete - IIII Modelling the durability of concrete structures
2. Computer models to predict the transport processes in concrete
3. Surface tests to determine transport properties of concrete - I: the tests
4. Surface tests to determine transport properties of concrete - II: analytical models to calculate permeability
5. Surface tests to determine transport properties of concrete - III: measuring gas permeability
6. Measurements of gas migration in concrete
7. Water vapour and liquid permeability measurements in concrete
8. Measurement of porosity as a predictor of the transport properties of concrete
9. Factors affecting the measurement of the permeability of concrete
10. Electrical tests to analyse the transport properties of concrete - I: modelling diffusion and electromigration
11. Electrical tests to analyse the transport properties of concrete - II: using a neural network model to derive diffusion coefficients
12. Electrical tests to analyse the fundamental transport properties of concrete - III: modelling tests without applied voltages
13. Applications using measured values of the transport properties of concrete - I: predicting the durability of reinforced concrete
14. Applications using measured values of the transport properties of concrete - II: modelling the effect of gas pressure
15. Applications using measured values of the transport properties of concrete - III: predicting the transport of liquids through concrete barriers for waste containment
16. Applications using measured vaules of the transport properties of concrete - IIII Modelling the durability of concrete structures