Ћирилица
Цветиновић, Дејан
Варијанте имена
Dejan, Cvetinović
Дејан, Цветиновић
Dejan, Cvetinovic
eCris ID
Google Scholar профил
Биографија
Dejan Cvetinović, Senior Research Associate at VINČA Institute of Nuclear Science – National Institute of the Republic of Serbia has been very active for thirty years in applying the knowledge acquired in scientific research in solving specific problems in real business (from the beginning of the negotiation process, through contracting, design, execution, quality reporting, presentation of results to clients and invoicing).
Leads a group that has been contracted for many years by a large number of internationally renowned companies in the energy sector (General Electric, Alstom, Mitsubishi Hitachi, SteinMueller, Siemens, Rafako, Greek Power Production Company - PPC, Mytilineos group - METKA, TERNA, Solergon, ZK Termochem) and domestic industry (JP EPS, JP Toplane, Via Ocel, Feromont, EMI) for the execution of very lucrative and professional works at home and abroad (Germany, Greece, Slovenia, Croatia, Turkey, Bosnia and Herzegovina, Montenegro, Northern Macedonia, Iran).
We can justifiably claim that there are perhaps one or two other institutions in the whole of Europe that are capable of carrying out very complex thermal engineering tests on large thermal power plants and that have the acquired knowledge and ability to respond to the very difficult requirements of large multinational companies that need field tests.

EDUCATION

Diploma studies: Mechanical engineering faculty, University of Belgrade, Aircraft design department
Postgraduate studies: Mechanical engineering faculty, University of Belgrade, Aircraft design department
PhD Thesis: “Experimental and Numerical Investigation on Influence of Axisymmetric Turbulent Jet Modification by Acoustic Oscillations on Impinging Jet Heat Transfer”, Mechanical engineering faculty, University of Belgrade, Fluid mechanics department
 
Интересовања
 Plasma technology for the synthesis of ultrafine ceramic powders and plasma technology for use in thermal power plants  Plasma chemical decomposition in reactor technology (particular emphasis on hazardous and non-toxic waste material treatment)  Thermodynamic calculations of the equilibrium composition of chemical systems  Waste-to-energy and waste-to-product technology development  Combustion, gasification and pyrolysis (biomass, waste, mixtures)  Optimization and increase of efficiency of coal-fired thermal power plants  Complex systems for the acquisition and monitoring of thermal power plants  Fluid mechanics - measuring techniques (HWA, LDA, PIV)  Heat exchange and heat transfer  Numerical fluid mechanics (CFD)  Renewable energy sustainable utilization
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