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Featured researches published by Dragan Tucakovic.


Thermal Science | 2017

Development of mathematical model for co-firing pulverized coal and biomass in experimental furnace

Aleksandar Milicevic; Srđan V. Belošević; Ivan D. Tomanović; Nenad Crnomarkovic; Dragan Tucakovic

A comprehensive mathematical model for prediction of turbulent transport processes and reactions during co-combustion of pulverized fuels in furnace fired by 150 kW swirl stabilized-burner has been developed. Numerical simulations have been carried out by using an in-house developed computer code, with Euler-Lagrangian approach to the two-phase flow modelling and sub-models for individual phases during complex combustion process: evaporation, devolatilization, combustion of volatiles, and char combustion. For sub-model of coal devolatilization the approach of Merrick is adopted, while for biomass devolatilization the combination models of Merrick, and of Xu and Tomita are selected. Products of devolatilization of both the pulverized coal and biomass are considered to contain the primary gaseous volatiles and tar, which further decomposes to secondary gaseous volatiles and residual soot. The residual soot in tar and carbon in coal and biomass char are oxidized directly, with ash remaining. For volatiles combustion the finite rate/eddy break-up model is chosen, while for char oxidation the combined kinetic-diffusion model is used. The comprehensive combustion model is validated against available experimental data from the case-study cylindrical furnace. The agreement of the simulations with the data for the main species in the furnace is quite good, while some discrepancies from experimental values are found in the core zone. The presented model is a good basis for further research of co-combustion processes and is able to provide analysis of wide range of pulverized fuels, i. e. coal and biomass. At the same time, the model is relatively simple numerical tool for effective and practical use.


International Journal of Heat and Mass Transfer | 2006

Three-dimensional modeling of utility boiler pulverized coal tangentially fired furnace

Srdjan Belosevic; Miroslav Sijercic; Simeon Oka; Dragan Tucakovic


Applied Thermal Engineering | 2015

Numerical prediction of processes for clean and efficient combustion of pulverized coal in power plants

Srdjan Belosevic; Ivan D. Tomanović; Vladimir Beljanski; Dragan Tucakovic; Titoslav Živanović


Fuel | 2008

A numerical study of a utility boiler tangentially-fired furnace under different operating conditions

Srdjan Belosevic; Miroslav Sijercic; Dragan Tucakovic; Nenad Crnomarkovic


Applied Thermal Engineering | 2007

Thermal–hydraulic analysis of a steam boiler with rifled evaporating tubes

Dragan Tucakovic; Vladimir Stevanović; Titoslav Zivanovic; Aleksandar Jovović; Vladan B. Ivanović


Energy & Fuels | 2012

Numerical Analysis of NOx Control by Combustion Modifications in Pulverized Coal Utility Boiler

Srdjan Belosevic; Vladimir Beljanski; Ivan D. Tomanović; Nenad Crnomarkovic; Dragan Tucakovic; Titoslav Zivanovic


International Journal of Heat and Mass Transfer | 2013

Numerical investigation of processes in the lignite-fired furnace when simple gray gas and weighted sum of gray gases models are used

Nenad Crnomarkovic; Miroslav Sijercic; Srdjan Belosevic; Dragan Tucakovic; Titoslav Zivanovic


Energy & Fuels | 2009

Numerical Prediction of Pulverized Coal Flame in Utility Boiler Furnaces

Srdjan Belosevic; Miroslav Sijercic; Nenad Crnomarkovic; Branislav Stankovic; Dragan Tucakovic


Applied Thermal Engineering | 2016

Numerical study of pulverized coal-fired utility boiler over a wide range of operating conditions for in-furnace SO2/NOx reduction

Srdjan Belosevic; Ivan D. Tomanović; Nenad Crnomarkovic; Aleksandar Milicevic; Dragan Tucakovic


Energy | 2012

Influence of forward scattering on prediction of temperature and radiation fields inside the pulverized coal furnace

Nenad Crnomarkovic; Miroslav Sijercic; Srdjan Belosevic; Branislav Stankovic; Dragan Tucakovic; Titoslav Zivanovic

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Aleksandar Milicevic

Massachusetts Institute of Technology

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