Oilwell Cements. Part 4. Use in geothermal wells
 
 
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School of Crystallography, Birkbeck College, University of London
 
 
Publication date: 2007-01-01
 
 
Cement Wapno Beton 12(1) 16-26 (2007)
 
REFERENCES (24)
1.
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2.
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3.
J. Bensted: Cementy wiertnicze. Czesc 3. Plastyczne mieszanki cementu wiertniczego o zwiekszonej trwalosci dlugookresowej./ Oilwell cements. Part 3. Ductile cement compositions for better long term durability. Cement-Wapno-Beton No.1, 13-32 (2005).
 
4.
E.B. Nelson: Well Cementing. Schlumberger Educational Services, Houston, Texas (1990).
 
5.
J. Bensted: Developments with oilwell cements in Structure and Performance of Cements, 2nd Edition. (Editors: J. Bensted and P. Barnes), pp. 237-252. Spon Press, London and New York (2002).
 
6.
J. Bensted: Admixtures for Oilwell Cements, in Concrete Admixtures Handbook, (Editor: V.S. Ramachandran), pp. 1077-1111. Noyes Publications, Park Ridge, New Jersey (1995).
 
7.
A.I. Bulatov: Tamponazhnye Materialy i Tekhnologiya Tsementirovaniya Skvazhin. 3rd Edition, Nedra Publishers, Moscow (1982). English version: Plugging Materials and the Cementing of Wells. 2nd Edition, Mir Publishers, Moscow (1985).
 
8.
A. Blanco, A. Colina, W. Rodríguez and R. Bolívar: Effective pay zone isolation of steam injection wells. SPE 5368.
 
9.
SPE Latin American and Caribbean Petroleum Engineering Conference, Caracas, Venezuela, 21- 23 April (1999). 9. J. Bensted: I cementi calcioalluminosi nella cementazione dei pozzi petroliferi. / Calcium aluminate cements in well cementing. L’Industria Italiana del Cemento, No. 740, 150-165 (1999).
 
10.
T. Sugama, L. Weber and L.E. Brothers: Ceramic fi bre-reinforced calcium aluminate/fl y ash/polyphosphate cements at a hydrothermal temperature of 280o C. Advances in Cement Research 14, No.1, 25-34 (2002).
 
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T. Sugama and L. Brothers: Sodium silicate-activated slag for acidresistant geothermal well cements. Advances in Cement Research 16, No.2, 77-87 (2004)
 
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T. Sugama, L.E. Brothers and T.R. Van de Putte: Acid-resistant cements for geothermal wells: sodium silicate activated slag/fl y ash. Advances in Cement Research 17, No.2, 65-75 (2005).
 
13.
J. Bensted: Thaumasite sulphate attack – its scientifi c background and ramifi cations in construction. Kurdowski Symposium – Science of Cement and Concrete, Kraków, 2001. (Editors: W. Kurdowski and M. Gawlicki), pp.189-198. Wydawnictwo Naukowe Akapit, Kraków (2001).
 
14.
American Petroleum Institute: API Work Group reports fi eld tests of geothermal cements. Oil & Gas Journal 93-97, 11 February (1985).
 
15.
International Organisation for Standardisation: ISO 10426-3, Petroleum and natural gas industries – Cements and materials for well cementing – Part 3: Testing of deepwater well cement formulations. ISO, Geneva (2003).
 
16.
International Organisation for Standardisation: ISO 10426-4, Petroleum and natural gas industries – Cements and materials for well cementing – Part 4: Preparation and testing of foamed cement slurries at atmospheric pressure. ISO, Geneva (2004).
 
17.
J. Bensted: Scientifi c aspects of high alumina cement. / Naukowe aspekty cementów glinowych. Cement-Wapno-Beton No.3, 109-133 (2004).
 
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J. Bensted: Mechanism of thaumasite sulphate attack in cements, mortars and concretes. Zement-Kalk-Gips International 53 (12), 704-709 (2000).
 
19.
J. Bensted: Thaumasite – direct, woodfordite and other possible formation routes. Cement & Concrete Composites 25, No.8, 873-877 (2003).
 
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K. Luke: personal communication (1998).
 
21.
J. Bensted: Scientifi c background to thaumasite formation in concrete. World Cement 29, No.11, 102-105 (1998).
 
22.
J. Bensted: Chemical considerations of sulphate attack. World Cement Technology 12 (4), 178-184 (1981).
 
23.
J. Bensted: Consideraciones químicas sobre el ataque por los sulfatos. Materiales de Construcción No.184, 97-99 (1981).
 
24.
J. Bensted: Hydration of Portland cement, in Advances in Cement Technology, 2nd Edition, (Editor: S.N. Ghosh), pp. 31-86. Tech Books International, New Delhi (2002).
 
ISSN:1425-8129
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