为研究低旋流燃烧(LSC)技术背离传统旋流燃烧机理的燃烧方式,以及其所具有的燃烧效率高、稳定性强、火焰区域温度低和NOx排放量极低等特点,采用数值模拟方法,对LSC燃烧和流动特性以及受喷射器多孔板阻塞比的影响进行初步研究.结果表明:LSC喷射器能够形成典型扩散湍流流动和"扫帚形"低温火焰结构;多孔板阻塞比对LSC喷射器扩散湍流流动分布、中心线上轴向气流速度和湍流强度有很大影响.
Low-swirl combustion (LSC) which deviates from traditional swirl combustion, has characteristics of higher combustion efficiency, low temperature flame region, good combustion stability and emissions of ultra-low NOx. Numerical simulations were carried out to study the flow field, combustion characteristics and the influences of screen blockage of LSC. Result shows that LSC injector generates divergent turbulent flow and broom flame brushes. The screen blockage has great influence on divergent flow field, centerline velocity profiles and centerline turbulent intensity of LSC.