Prohlížení dle autora "Brkić, Dejan"
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Accurate and efficient explicit approximations of the Colebrook flow friction equation based on the Wright omega-function
Brkić, Dejan; Praks, Pavel (Mathematics. 2019, vol. 7, issue 1, art. no. 34.) -
Accurate and efficient explicit approximations of the Colebrook flow friction equation based on the Wright omega-function: Reply to the discussion by Majid Niazkar
Praks, Pavel; Brkić, Dejan (Mathematics. 2020, vol. 8, issue 5, art. no. 796.) -
Accurate and efficient explicit approximations of the Colebrook flow friction equation based on the Wright ω-function: Reply to discussion
Brkić, Dejan; Praks, Pavel (Mathematics. 2019, vol. 7, issue 5, art. no. 410.) -
Advanced iterative procedures for solving the implicit Colebrook equation for fluid flow friction
Praks, Pavel; Brkić, Dejan (Advances in Civil Engineering. 2018, art. no. 5451034.) -
Air-forced flow in proton exchange membrane fuel cells: Calculation of fan-induced friction in open-cathode conduits with virtual roughness
Brkić, Dejan; Praks, Pavel (Processes. 2020, vol. 8, issue 6, art. no. 686.) -
An efficient iterative method for looped pipe network hydraulics free of flow-corrections
Brkić, Dejan; Praks, Pavel (Fluids. 2019, vol. 4, issue 2, art. no. 73.) -
Approximate flow friction factor: Estimation of the accuracy using Sobol's quasi-random sampling
Praks, Pavel; Brkić, Dejan (Axioms. 2022, vol. 11, issue 2, art. no. 36.) -
Choosing the optimal multi-point iterative method for the Colebrook flow friction equation
Praks, Pavel; Brkić, Dejan (Processes. 2018, vol. 6, issue 8, art. no. 130.) -
Colebrook's flow friction explicit approximations based on fixed-point iterative cycles and symbolic regression
Brkić, Dejan; Praks, Pavel (Computation. 2019, vol. 7, issue 3, art. no. 48.) -
Excel VBA - Based user defined functions for highly precise Colebrook's pipe flow friction approximations: A comparative overview
Brkić, Dejan; Stajić, Zoran (Facta Universitatis, Series: Mechanical Engineering. 2021, vol. 19, issue 2, p. 253-269.) -
Hydraulic losses in systems of conduits with flow from laminar to fully turbulent: A new symbolic regression formulation
Milošević, Marko; Brkić, Dejan; Praks, Pavel; Litričin, Dragan; Stajić, Zoran (Axioms. 2022, vol. 11, issue 5, art. no. 198.) -
Offshore oil and gas safety: Protection against explosions
Brkić, Dejan; Stajić, Zoran (Journal of Marine Science and Engineering. 2021, vol. 9, issue 3, art. no. 331.) -
One-log call iterative solution of the Colebrook equation for flow friction based on Pade polynomials
Praks, Pavel; Brkić, Dejan (Energies. 2018, vol. 11, issue 7, art. no. 1825.) -
Probability analysis and prevention of offshore oil and gas accidents: Fire as a cause and a consequence
Brkić, Dejan; Praks, Pavel (Fire. 2021, vol. 4, issue 4, art. no. 71.) -
Proper use of technical standards in offshore petroleum industry
Brkić, Dejan; Praks, Pavel (Journal of Marine Science and Engineering. 2020, vol. 8, issue 8, art. no. 555.) -
Rational approximation for solving an implicitly given Colebrook flow friction equation
Praks, Pavel; Brkić, Dejan (Mathematics. 2020, vol. 8, issue 1, art. no. 26.) -
Reliability-based criterion for evaluating explicit approximations of Colebrook equation
Easa, Said M.; Lamri, Ahmed A.; Brkić, Dejan (Journal of Marine Science and Engineering. 2022, vol. 10, issue 6, art. no. 803.) -
Review of new flow friction equations: Constructing Colebrook's explicit correlations accurately
Praks, Pavel; Brkić, Dejan (Revista Internacional de Métodos Numéricos para Cálculo y Diseño en Ingeniería. 2020, vol. 36, issue 3.) -
Selection of appropriate symbolic regression models using statistical and dynamic system criteria: Example of waste gasification
Praks, Pavel; Lampart, Marek; Praksová, Renáta; Brkić, Dejan; Kozubek, Tomáš; Najser, Jan (Axioms. 2022, vol. 11, issue 9, art. no. 463.) -
Short overview of early developments of the Hardy Cross type methods for computation of flow distribution in pipe networks
Brkić, Dejan; Praks, Pavel (Applied Sciences. 2019, vol. 9, issue 10, art. no. 2019.)