TY - JOUR
T1 - 副模旋流器叶片角对双旋流燃烧室内相干结构影响的大涡模拟研究
AU - Feng, Xiangzhou
AU - Suo, Jianqin
AU - Li, Qiandong
AU - Zheng, Longxi
N1 - Publisher Copyright:
©2023 Journal of Northwestern Polytechnical University.
PY - 2023/8
Y1 - 2023/8
N2 - Large-scale coherent structures in a dual-swirl direct-mix combustor and the effect of the pilot swirler blade angle variations (35◦, 40◦ and 45◦) on them are investigated by using the large eddy simulations. The results show that no apparent coherent structure is observed downstream of the main swirler, and four typical helical vortex structures are captured downstream of the pilot swirler, representing the PVC and its three higher harmonic modes, respectively. According to the "decoupling" position from the shear layer, the spiral vortex is divided into two regions in space, the "development zone" and the "dissipation zone", respectively. In the frequency domain, as the pilot swirler blade angle increases, the characteristic frequency of the PVC and its higher harmonic structures first decrease and then increase, the energy contribution of the harmonic mode increase, and the double-helix structure replaces the single-helix structure as the dominant structure in the non-constant flow field. In the space domain, as the pilot swirler blade angle increases, the total length of PVC remains basically constant, the initial radius gradually increases, the expansion angle first increases and then decreases, and the position of " decoupling" between shear layer and spiral vortex gradually advances.
AB - Large-scale coherent structures in a dual-swirl direct-mix combustor and the effect of the pilot swirler blade angle variations (35◦, 40◦ and 45◦) on them are investigated by using the large eddy simulations. The results show that no apparent coherent structure is observed downstream of the main swirler, and four typical helical vortex structures are captured downstream of the pilot swirler, representing the PVC and its three higher harmonic modes, respectively. According to the "decoupling" position from the shear layer, the spiral vortex is divided into two regions in space, the "development zone" and the "dissipation zone", respectively. In the frequency domain, as the pilot swirler blade angle increases, the characteristic frequency of the PVC and its higher harmonic structures first decrease and then increase, the energy contribution of the harmonic mode increase, and the double-helix structure replaces the single-helix structure as the dominant structure in the non-constant flow field. In the space domain, as the pilot swirler blade angle increases, the total length of PVC remains basically constant, the initial radius gradually increases, the expansion angle first increases and then decreases, and the position of " decoupling" between shear layer and spiral vortex gradually advances.
KW - coherent structure
KW - large eddy simulation
KW - POD
UR - http://www.scopus.com/inward/record.url?scp=85172016953&partnerID=8YFLogxK
U2 - 10.1051/jnwpu/20234140732
DO - 10.1051/jnwpu/20234140732
M3 - 文章
AN - SCOPUS:85172016953
SN - 1000-2758
VL - 41
SP - 732
EP - 739
JO - Xibei Gongye Daxue Xuebao/Journal of Northwestern Polytechnical University
JF - Xibei Gongye Daxue Xuebao/Journal of Northwestern Polytechnical University
IS - 4
ER -