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Simulation of heat flow in concrete

Dunja Mikulić
Bojan Milovanović
Ivan Gabrijel

Puni tekst: hrvatski, pdf (716 KB) str. 941-950 preuzimanja: 1.201* citiraj
APA 6th Edition
Mikulić, D., Milovanović, B. i Gabrijel, I. (2010). Simulacija toplinskog toka. Građevinar, 62 (10.), 941-950. Preuzeto s https://hrcak.srce.hr/61470
MLA 8th Edition
Mikulić, Dunja, et al. "Simulacija toplinskog toka." Građevinar, vol. 62, br. 10., 2010, str. 941-950. https://hrcak.srce.hr/61470. Citirano 28.11.2020.
Chicago 17th Edition
Mikulić, Dunja, Bojan Milovanović i Ivan Gabrijel. "Simulacija toplinskog toka." Građevinar 62, br. 10. (2010): 941-950. https://hrcak.srce.hr/61470
Harvard
Mikulić, D., Milovanović, B., i Gabrijel, I. (2010). 'Simulacija toplinskog toka', Građevinar, 62(10.), str. 941-950. Preuzeto s: https://hrcak.srce.hr/61470 (Datum pristupa: 28.11.2020.)
Vancouver
Mikulić D, Milovanović B, Gabrijel I. Simulacija toplinskog toka. Građevinar [Internet]. 2010 [pristupljeno 28.11.2020.];62(10.):941-950. Dostupno na: https://hrcak.srce.hr/61470
IEEE
D. Mikulić, B. Milovanović i I. Gabrijel, "Simulacija toplinskog toka", Građevinar, vol.62, br. 10., str. 941-950, 2010. [Online]. Dostupno na: https://hrcak.srce.hr/61470. [Citirano: 28.11.2020.]

Sažetak
The methodology and methods used in estimating temperature field in mass concrete are presented. Theoretical background for the Schmidt numerical method and the finite element method are given, and the way in which input parameters are defined is shown. The case study, involving variation of influence parameters from materials, concreting requirements and concreting technology, was conducted so that the construction technology can be optimised by reducing the heat-induced cracking hazard.

Ključne riječi
mass concrete; heat flow; temperature range; Schmidt method; finite element method; influence parameters

Hrčak ID: 61470

URI
https://hrcak.srce.hr/61470

[hrvatski]

Posjeta: 1.406 *