AKNOWLEDGEMENT
The authors would like to acknowledge the financial support provided by the Swedish Research
Council Formas and also Mr Ismael Lensol whom carried out most of laboratory experiments as
a part of his master thesis.
94
REFERENCES
1. Mahasenan, N., Smith, S., Humphreys, K., & Kaya, Y. “The cement industry and global
climate change: current and potential future cement industry CO2
emissions.”
Greenhouse Gas Control Technologies-6th International Conference
,
August 2003, Oxford: Pergamon ,pp. 995-1000
2. “Meeting the challenge through a zero vision” retrieved 10
th
Oct 2014 from:
http://www.hcne-sustainability.nu/en/node/2183
3. “Carbon capture newsletter”, 2014-2, retrieved 10
th
Oct 2014 from:
http://www.heidelbergcement.com/no/no/norcem/sustainability/Karbonfangst/Nyhetsbre
v.htm
4. Wong, H. H., & Kwan, A. K. “Packing density: a key concept for mix design of high
performance concrete”.
Proceedings of the materials science and technology in
engineering conference
, HKIE materials division, Hong Kong, May 2005, pp. 1-15
5. Quiroga, P. N., & Fowler, D. W. “Guidelines for proportioning optimized concrete
mixtures with high microfines”.
International Center for Aggregates Research Report:
104-2
, 2004.
6. Feret, R. “Sur la compacité des mortiers hydrauliques”.
Annales des Ponts et Chaussees.
Vol. 4 (2e semestre)
, 1892,(pp. 5-16).(In French)
7. Fuller, W. B., & Thompson, S. E. “The laws of proportioning concrete”.
Transactions of
the American Society of Civil Engineers, 57(2),
1907.
8. Andreasen, A. M., & Andersen, J. “Relation between grain size and interstitial space in
products of unconsolidated granules.”
Kolloid Z journal
, 50, 1930, pp. 217-218
9. Furnas, C. C. “Flow of gases through beds of broken solids”
(Vol. 300). US Govt. print.
off.
1929.
10. Jones, M. R., Zheng, L., & Newlands, M. D. “Comparison of particle packing models for
proportioning concrete constituents for minimum voids ratio”
Journal of Material and
Science,
Vol 35, June 2002, pp. 301-309
11. Dewar, J. ”Computer modelling of concrete mixtures.”
CRC Press
, 2002.
12. Johansen, V., & Andersen, P. J. “ Particle packing and concrete properties”,
Journal of
Materials and Science of Concrete 2
. 1996, pp. 111-147
13. Toufar, W., Born, M., & Klose, E. “Contribution of optimisation of components of
different density in polydispersed particles systems”.
Freiberger Booklet A
, 1976, pp.
29-44
14. Goltermann, P., & Johansen, V. (1997). “Packing of aggregates: an alternative tool to
determine the optimal aggregate mix”
ACI Materials Journal, 94(5).
1997, pp. 435-443
15. Fennis, S. A. A. M.“Design of ecological concrete by particle packing optimization”
Dissertation, Delft University of Technology
. 2011.
16. Stovall, T., Larrard, F. de and Buil, M. “ Lineair Packing Density Model of Grain
Mixtures”
Powder Technology, Vol. 48
, 1986, pp. 1-12
17. Larrard, F. de. “Concrete mixture proportioning: a scientific approach”.
London: E & FN
Spon
. 1999.
18. Glavind, M., Olsen, G. S., & Munch-Petersen, C. ”Packing calculations and concrete
mix design”.
Nordic Concrete Research
, 13(2).1993.
19. Swedish Standards Institute, “Tests for mechanical and physical properties of aggregate
– Part 3: Determination of loose bulk density and voids”.
SS-EN-1097:3
. October 1998.
Do'stlaringiz bilan baham: |