Title :
Characterization of micro-cyclone combustion for micropower generator
Author :
Ishak, Mohammad Zulfikar ; Sidek, Othman ; Miskam, Mohd Azfar ; Zainal Alauddin, Zainal Alimuddin ; Ahmad, Mohd Ashraf ; Murat, Muhamad Nazri
Author_Institution :
Collaborative Microelectron. Design Excellence Centre, Univ. Sains Malaysia, Nibong Tebal, Malaysia
Abstract :
This paper presents the characterization of a micro-cyclone combustor that burns liquefied petroleum gas. The combustor is made of stainless steel and has a reaction chamber volume of 1.15 cm3. Fuel and air are mixed inside the chamber by injecting the fuel perpendicularly to the tangentially injected air. The experiment demonstrates that the flame is sustained inside the micro-combustor over a wide range of fuel flow rates and equivalent ratios. The shapes of the flame are visualized experimentally, and the results indicate that different equivalent ratios produce different flame shapes. Combustion stability measurement exhibits that combustion blowout limit decreases as fuel flow rate increases from 10 sccm to 100 sccm, Wall temperature measurement shows that an equivalent ratio of 1.0 produces the most uniform temperature distribution.
Keywords :
combustion; flames; petroleum; stainless steel; temperature distribution; thermal power stations; combustion blowout limit; combustion stability measurement; equivalent ratio; flame shapes; fuel flow rate; liquefied petroleum gas; microcombustor; microcyclone combustion characterization; micropower generator; reaction chamber volume; stainless steel; temperature distribution; wall temperature measurement; Combustion; Conferences; Fires; Fuels; Shape; Temperature measurement; Thermal stability; LPG; Micro-combustor micro-combustion; cyclone; micro-power generation;
Conference_Titel :
Clean Energy and Technology (CEAT), 2013 IEEE Conference on
Conference_Location :
Lankgkawi
Print_ISBN :
978-1-4799-3237-5
DOI :
10.1109/CEAT.2013.6775644