Open Access
Issue
BIO Web Conf.
Volume 107, 2024
19th International Conference Water and Wastewater: Transportation, Treatment, Management “Yakovlev Readings” (YRC-2024)
Article Number 06012
Number of page(s) 9
Section Technology and Organization of Construction
DOI https://doi.org/10.1051/bioconf/202410706012
Published online 07 May 2024
  • ACI 305R-20, Guide to Hot Weather Concreting Reported by ACI Committee 305. [Google Scholar]
  • Ramadan R. et al, 2022, Effect of hot weather concreting on the mechanical and durability properties of concrete- a review, Volume )4(, Issue 1 ISSN: 2959-331X. [Google Scholar]
  • Zhutovsky, S. and Kovler, K., 2014, Cracking potential of internally cured concrete made at various water to cement ratios, International RILEM Conference on Application of Superabsorbent Polymers and Other New Admixtures in Concrete Construction, At: Dresden, Germany. [Google Scholar]
  • Otoko G. R., 2014, A compensation option for slump loss during hot-weather concreting, International Journal of Engineering and Technology Research, Vol. (2), No. 2, February 2014, PP: 1 - 7, ISSN: 2327-0349. [Google Scholar]
  • Alhozaimy, A. M (2007), Effect of retempering on the compressive strength of ready -mixed concrete in hot-dry environments, Cement & Concrete composites. [Google Scholar]
  • Kulkarni DK, Prakash KB., 2013, Experimental Investigation of Addition of Combination of Admixtures on the Properties of Retempered Concrete, In Proceedings of the World Congress on Engineering. [Google Scholar]
  • Surahyo A., 2019, Hot and Cold Weather Concreting, In Concrete Construction, 257-272. Springer, Cham. http://doi.org/10.1007/978-3-030-10510-5_11. [Google Scholar]
  • Awall M. R. and Amin M. R., 2019, Effect of Compressive Strength on Concrete in Hot Weather, Proceedings of International Conference on Planning, Architecture and Civil Engineering, 7 - 9 February 2019, Rajshahi University of Engineering & Technology. [Google Scholar]
  • Mennatallah A. and Nagib A. M., 2018, The effect of mixing water temperature on Concrete Properties in hot weather conditions, Building Tomorrow’s Society, 13 – 16 June, 2018, Fredericton, Canada. [Google Scholar]
  • Fakhratov M.A, Al-Juboori Hussein A.M.S, Production of monolithic structures in a dry hot climate, System technologies. 2023. № 3 (48). pp. 167-176. [Google Scholar]
  • Khakimov Sh.A., Muminov K.K., 2021, Concrete dehydration in a dry–hot climate, scientific electronic journal «matrix of scientific knowledge», ISSN 2541-8084. [Google Scholar]
  • Archakova Valentina, 2018, Features of the production of concrete works in hot and dry climates, volume (4), December 11-12, 2018 ISBN 978-5-9909462-7-9. [Google Scholar]
  • Bella N., 2017, A review of hot climate concreting, and the appropriate procedures for ordinary jobsites in developing countries, MATEC Web of Conferences 120, 02024 (2017) ASCMCES-17, DOI: 10.1051/ matecconf/201712002024. [CrossRef] [EDP Sciences] [Google Scholar]
  • Ishanovich A. A. and Khakimovich A. U., 2021, Technological methods for improving the water resistance of concrete in a dry hot climate, International Journal of Advanced Research in Science, Engineering and Technology, Vol (8), Issue 2, February 2021, ISSN: 2350-0328. [Google Scholar]
  • Neville A. M., 2011, 5th edition, Properties of Concrete, Published by Pearson (October 28, 2011) © 2012, ISBN-13: 9780273755807. [Google Scholar]
  • ACI 308R-16 Guide to External Curing of Concrete Reported by ACI Committee 308. [Google Scholar]
  • Baskakov K.O., 2020, Features of concreting during the construction of high-rise buildings in a dry hot climate, Scientific and educational magazine for students and teachers “StudNet” № (5), 2020. [Google Scholar]
  • Narov R., 2023, Influence of compound additive on concrete in hot and dry climate, E3S Web of Conferences 365, 02012 (2023), Doi.org/10.1051/e3sconf/202336502012. [CrossRef] [EDP Sciences] [Google Scholar]
  • Otoko G. R., 2014, Minimising hot weather effects on fresh and hardened concrete by use of cassava powder as admixture, European International Journal of Science and Technology Vol (3), No. 2, March, 2014. [Google Scholar]
  • Selezneva O. and Shustov P., 2019, Concreting in dry hot climate, IOP Conf. Series: Materials Science and Engineering 667(2019) 012090, Doi:10.1088/1757-899X/667/1/012090. [CrossRef] [Google Scholar]
  • Selezneva O.I., Baranova A. A., Shustov P.A., 2019, The influence of plasticizing additives on the concrete hardening process in a dry hot climate, Technical Sciences. Construction, Original article, DOI:10.21285/2227-2917-2019-2-364-371. [Google Scholar]
  • Sonebi M., 2007, Plastic Shrinkage Cracking of Concrete in Hot Weather: Effect of Temperature, Wind and Fibres, https://www.researchgate.net/publication/338264095. [Google Scholar]
  • Zeyad A. M., 2019, Effect of curing methods in hot weather on the properties of high-strength concretes, Journal of King Saud University – Engineering Sciences 31 (2019) 218–223. [CrossRef] [Google Scholar]
  • Fakhratov M.A, Al-Juboori Hussein A.M.S. Problems of concrete technology in a dry hot climate and ways to solve them, Components scientific and technological progress. 2023. № 6 (84). pp. 19-32. [Google Scholar]
  • EKUBAY Y. K., 2019, Effects of hot weather concreting operations on strength of concrete: a case study of building construction projects in SEMERA, ADDIS ABABA science and technology university. [Google Scholar]
  • Mohan S. V., 2013, Concrete in Hot Weather Conditions-Challenges–Precautions, International Journal of Science and Research (IJSR), ISSN (Online): 2319-7064. [Google Scholar]

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