Innovation science and technologiy 1-tom 11-san (2025)

MATHEMATICAL MODEL FOR PREDICTING THE DYNAMIC EVOLUTION OF CRACKS IN URBAN CONSTRUCTION STRUCTURES

Sh. A. Anarova, M. N. Samidov

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Annotaciya

In this study, a new mathematical model based on fractal theory has been developed to predict the servicelife of cracks. The model covers the entire life cycle of a crack, from its initiation to its critical length. A mathematicalmodel grounded in kinetic theory has been formulated and expressed as a differential equation, and its integral form hasbeen solved. The main innovation of the model is the introduction of the fractal dimension parameter Dₛ, which makesit possible to account for the complex geometry of the crack surface. The accuracy of the model has been confirmedthrough computer experiments, showing R² = 0.96. The proposed model is an effective tool for assessing the long-termbehavior of construction materials.

fractal, criterion, strength, mathematical model, crack, critical stress

Metadata derekkózi: jurnal OAI-PMH arxivi · Sindex tolıq mátindi saqlamaydı, derekkózge silteme beredi.

Dáyeksóz alıw

APA 7
Sh. A. Anarova & M. N. Samidov (2025). MATHEMATICAL MODEL FOR PREDICTING THE DYNAMIC EVOLUTION OF CRACKS IN URBAN CONSTRUCTION STRUCTURES. Innovation science and technologiy, 1(11).
GOST R 7.0.5
Sh. A. Anarova, M. N. Samidov MATHEMATICAL MODEL FOR PREDICTING THE DYNAMIC EVOLUTION OF CRACKS IN URBAN CONSTRUCTION STRUCTURES // Innovation science and technologiy. 2025. Т. 1. № 11.
BibTeX
@article{anarova2025,
  author  = {Sh. A. Anarova and M. N. Samidov},
  title   = {MATHEMATICAL MODEL FOR PREDICTING THE DYNAMIC EVOLUTION OF CRACKS IN URBAN CONSTRUCTION STRUCTURES},
  journal = {Innovation science and technologiy},
  year    = {2025},
  volume  = {1},
  number  = {11}
}
RIS
TY  - JOUR
AU  - Sh. A. Anarova
AU  - M. N. Samidov
TI  - MATHEMATICAL MODEL FOR PREDICTING THE DYNAMIC EVOLUTION OF CRACKS IN URBAN CONSTRUCTION STRUCTURES
JO  - Innovation science and technologiy
PY  - 2025
VL  - 1
IS  - 11
ER  -