Browse > Article
http://dx.doi.org/10.7842/kigas.2019.23.3.1

A Study on the Recirculation Flow Characteristics with the Change of Shape in a Flue Gas Recirculation Device using Coanda Nozzle  

Ha, Ji Soo (Dept. of Mechanical & Automotive Engineering, Keimyung University)
Shim, Sung Hun (Korea Institute of Machinery & Materials)
Kim, Dae Yeon (G&Tech)
Publication Information
Journal of the Korean Institute of Gas / v.23, no.3, 2019 , pp. 1-6 More about this Journal
Abstract
The purpose of the present study is to elucidate flue gas recirculation device for reduction of nitrogen oxides using coanda nozzle without adopting additional power driving fan in a waste incinerator. The characteristics of the exhaust gas recirculation flow rate and the average temperature change at the outlet of the mixed gas were investigated according to the change of air supply nozzle gap and the position of air supply nozzle. When the gap of the air supply nozzle was changed to 3.22, 4.03, and 4.84 mm, the largest recirculation flow ratio, which is the ratio of exhaust gas recirculation flow rate and air supply flow rate, was 2.227 for the case with 3.22 mm and its mean temperature at outlet was $594.8^{\circ}C$. When the position of the air supply nozzle changes to the front position, neck position, and expansion position of the coanda nozzle neck, the recirculation flow ratios at the forward position and the neck position were nearly almost the same value, 1.843, and 1.696 at the expansion position, their mean temperatures were $559.8^{\circ}C$ and $544.3^{\circ}C$, respectively.
Keywords
coanda nozzle; NOx reduction; air nozzle gap; air nozzle position; recirculation flow ratio; exit mean temperature;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
1 J.A. Wuuning and J.G. Wunning, "Flameless oxidation to reduce thermal NO-formation", Prog. Energy Combust.Sci., vol.23, 81-97, (1997)   DOI
2 M. Katsuki, T.Hasegawa, "The science of technology of combustion in highly preheated air", 27 Symp (Int) Combustion, 3135-3146, (1998)
3 A. Cavaliere, M. De Joannon, R. Ragucci, "Mild combustion of high temperature reactants", 2nd International Symposium on High Temperature Air Combustion, (1999)
4 Sung Hoon Shim and Ji Soo Ha, "A study on the exhaust gas recirculation in a MILD combustion furnace by using the coanda nozzle effect", Korean Society of Environmental Engineers, Vol. 35, No. 12, 967-972, (2013)   DOI
5 Sung Hoon Shim and Ji Soo Ha, "Characteristics of entrainment flow rate in a Coanda nozzle with or without coaxial contractor", KIGAS, 18(2), 21-27, (2014)
6 Ji Soo Ha, "A study on the cold flow characteristics of a flue gas recirculation burner with both outlets opening", KIGAS, 22(3), 7-12, (2018)