TR 32036, TR 35038

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TR 32036, TR 35038

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Publications

STRESS CALCULATION AND DEFORMATION OF TANKS LOADED BY INTERNAL GAS PRESSURE LOCATED IN CITY HEATING PLANTS

Petrović, Radovan; Vasilski, Dragana; Anđelković, Maja; Sedmak, Simon; Omran, Khaled; Shweka, Salem

(2022)

TY  - JOUR
AU  - Petrović, Radovan
AU  - Vasilski, Dragana
AU  - Anđelković, Maja
AU  - Sedmak, Simon
AU  - Omran, Khaled
AU  - Shweka, Salem
PY  - 2022
UR  - https://machinery.mas.bg.ac.rs/handle/123456789/7139
AB  - The paper presents the procedure for calculating stress
in gas pressure tanks using finite shell elements for linear
and geometrically nonlinear analysis. Therefore, a procedure has been developed to automatically generate the
necessary data for the finite element method (FEM), such
as geometry, numbering of elements and nodes, and the
determination of forces. Forces are calculated from: pressure difference in relation to external pressure; hydrostatic
pressure and gas pressure; and pressure vessel weight. It
enables fairly simple and easy use of developed software in
everyday practice and provides great opportunities for
further upgrading and fundamental determination of the
impact on parameters for different types of tanks and pressure containers in general.
T2  - Structural Integrity and Life
T1  - STRESS CALCULATION AND DEFORMATION OF TANKS LOADED BY INTERNAL GAS PRESSURE LOCATED IN CITY HEATING PLANTS
IS  - 2
VL  - 22
UR  - https://hdl.handle.net/21.15107/rcub_machinery_7139
ER  - 
@article{
author = "Petrović, Radovan and Vasilski, Dragana and Anđelković, Maja and Sedmak, Simon and Omran, Khaled and Shweka, Salem",
year = "2022",
abstract = "The paper presents the procedure for calculating stress
in gas pressure tanks using finite shell elements for linear
and geometrically nonlinear analysis. Therefore, a procedure has been developed to automatically generate the
necessary data for the finite element method (FEM), such
as geometry, numbering of elements and nodes, and the
determination of forces. Forces are calculated from: pressure difference in relation to external pressure; hydrostatic
pressure and gas pressure; and pressure vessel weight. It
enables fairly simple and easy use of developed software in
everyday practice and provides great opportunities for
further upgrading and fundamental determination of the
impact on parameters for different types of tanks and pressure containers in general.",
journal = "Structural Integrity and Life",
title = "STRESS CALCULATION AND DEFORMATION OF TANKS LOADED BY INTERNAL GAS PRESSURE LOCATED IN CITY HEATING PLANTS",
number = "2",
volume = "22",
url = "https://hdl.handle.net/21.15107/rcub_machinery_7139"
}
Petrović, R., Vasilski, D., Anđelković, M., Sedmak, S., Omran, K.,& Shweka, S.. (2022). STRESS CALCULATION AND DEFORMATION OF TANKS LOADED BY INTERNAL GAS PRESSURE LOCATED IN CITY HEATING PLANTS. in Structural Integrity and Life, 22(2).
https://hdl.handle.net/21.15107/rcub_machinery_7139
Petrović R, Vasilski D, Anđelković M, Sedmak S, Omran K, Shweka S. STRESS CALCULATION AND DEFORMATION OF TANKS LOADED BY INTERNAL GAS PRESSURE LOCATED IN CITY HEATING PLANTS. in Structural Integrity and Life. 2022;22(2).
https://hdl.handle.net/21.15107/rcub_machinery_7139 .
Petrović, Radovan, Vasilski, Dragana, Anđelković, Maja, Sedmak, Simon, Omran, Khaled, Shweka, Salem, "STRESS CALCULATION AND DEFORMATION OF TANKS LOADED BY INTERNAL GAS PRESSURE LOCATED IN CITY HEATING PLANTS" in Structural Integrity and Life, 22, no. 2 (2022),
https://hdl.handle.net/21.15107/rcub_machinery_7139 .