Numerical Study on NOx Reduction in Pulse Detonation Combustion by Using Steam Injection Decoupled From Detonation Development
Autor: | Niclas Hanraths, Fabian Tolkmitt, Phillip Berndt, Neda Djordjevic |
---|---|
Rok vydání: | 2018 |
Předmět: |
020301 aerospace & aeronautics
Flue gas Materials science 020209 energy Mechanical Engineering Detonation Steam injection Energy Engineering and Power Technology Aerospace Engineering 02 engineering and technology Mechanics Combustion 01 natural sciences 010305 fluids & plasmas Pulse (physics) Fuel Technology Nuclear Energy and Engineering 0203 mechanical engineering 0103 physical sciences 0202 electrical engineering electronic engineering information engineering Reduction (mathematics) Nitrogen oxides NOx |
Zdroj: | Volume 4B: Combustion, Fuels, and Emissions. |
DOI: | 10.1115/gt2018-76842 |
Popis: | Recently, the focus has been laid on the characteristics of pollutant emissions from pulse detonation combustion. Initial studies indicate possibly high nitrogen oxides (NOx) emissions, so the assessment of potential primary reduction methods is advisable. The present work considers the following reduction methods: lean combustion, nitrogen and steam dilution as well as flue gas recirculation. Since such changes in the combustion mixture reduce its reactivity and thus detonability, they can impair a reliable operation in technical systems. In order to explore the potential and limitations of each of these reduction methods, they are compared for mixtures featuring an identical characteristic detonation cell size at given initial conditions. Furthermore, building upon the use of steam dilution, a modified method to add steam to the combustible mixture is investigated. In order to avoid the strong reduction of mixture detonability by steam addition and ensure a robust detonation formation, steam is injected into the already developed detonation front. It was found that, for sufficiently even steam distribution, NOx reduction comparable to a premixed dilution could be achieved. This approach enables the realization of NOx reduction in pulse detonation combustion also for such conditions, for which premix dilution is not feasible. Therefore, combining the premix dilution with post-shock injection offers a promising strategy to substantially reduce NOx emissions from pulse detonation combustion, while at the same time ensuring its reliable operation. |
Databáze: | OpenAIRE |
Externí odkaz: |