DocumentCode :
2973634
Title :
Simulation of the processes inside an entrained flow gasifier
Author :
Adeyemi, I. ; Janajreh, Isam
Author_Institution :
Mech. Eng. Program, Masdar Inst. of Sci. & Technol., Abu Dhabi, United Arab Emirates
fYear :
2013
fDate :
29-31 May 2013
Firstpage :
91
Lastpage :
99
Abstract :
Gasification is making a strong comeback as a sustainable energy source in clean energy systems such as IGCC, as a renewable source utilizing millions of tons of waste dumped in the landfill, and as a solution to the ground water leaching and CO2 & CH4 emission that risking our ecological system. In this paper, thermodynamic equilibrium and numerical analyses of the gasification of coal and tire crumbs in an entrained flow gasifier is presented. This work seeks to obtain a comparative analysis between the optimum operation conditions for the two feedstocks. The numerical model uses an Eulerian-Lagrangian approach with discrete phase model of feedstock in a continuous model of oxidant. This model also takes into account the turbulent flow (SST k-ω model), gas phase gasification (Species Transport model), tire particles devolatilization (Kobayashi Two-Competing Rate model), heterogeneous char reaction (Multiple Surface reaction model), particle dispersion by turbulent flow (Stochastic Discrete Random Walk model), radiation (P1 model) and particle distribution (Rosin Rammler model). The temperature distribution and product distribution of the developed model is also presented in this paper.
Keywords :
coal; flow simulation; fuel gasification; numerical analysis; stratified flow; temperature distribution; turbulence; tyres; Eulerian-Lagrangian approach; IGCC; Kobayashi two-competing rate model; Rosin Rammler model; SST k-ω model; clean energy systems; coal gasification; ecological system; entrained flow gasifier; gas phase gasification; ground water leaching; heterogeneous char reaction; landfill; multiple surface reaction model; numerical model; oxidant; particle dispersion; particle distribution; process simulation; product distribution; species transport model; stochastic discrete random walk model; sustainable energy source; temperature distribution; tire crumbs; tire particles devolatilization; turbulent flow; Biological system modeling; Coal; Mathematical model; Numerical models; Tires; Water; Entrained flow; Gasification; IGCC; Numerical model; Thermodynamic Equilibrium;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Applications of Information Technology to Renewable Energy Processes and Systems (IT-DREPS), 2013 1st International Conference & Exhibition on the
Conference_Location :
Amman
Print_ISBN :
978-1-4799-0713-7
Type :
conf
DOI :
10.1109/IT-DREPS.2013.6588159
Filename :
6588159
Link To Document :
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