TY - JOUR
T1 - Effect of the duct and the pre-swirl stator on the wake dynamics of a pre-swirl pumpjet propulsor
AU - Qin, Denghui
AU - Huang, Qiaogao
AU - Pan, Guang
AU - Shi, Yao
AU - Han, Peng
AU - Dong, Xinguo
N1 - Publisher Copyright:
© 2021 Elsevier Ltd
PY - 2021/10/1
Y1 - 2021/10/1
N2 - A numerical study based on improved delayed detached eddy simulation is conducted to investigate the flow of a pre-swirl pumpjet propulsor (PJP). The PJP consists of a stator, a rotor, and a duct. In order to separate the roles played by the rotor, stator, and duct in determining the flow of PJP, three models are established: the R model (rotor only), the R–D model (rotor within a duct), and the PJP model (rotor and stator within a duct). Results show that the effect of the duct on the unsteady force acting on the rotor blades is weak, while the pre-swirl stator on it is strong due to the rotor–stator interference. In addition, the vortex structure of the three models are compared. The tip-duct mutual-inductance instability mode that the duct-induced vortex begins to affect adjacent tip vortices is reported. For the PJP model, a unique short-wave instability mode of the tip vortex caused by the existences of pre-swirl stator is discussed. More importantly, for the R–D and PJP model, the transition from stability to instability of the tip vortex depends on both the spiral-to-spiral distance and the strength of duct-induced vortex.
AB - A numerical study based on improved delayed detached eddy simulation is conducted to investigate the flow of a pre-swirl pumpjet propulsor (PJP). The PJP consists of a stator, a rotor, and a duct. In order to separate the roles played by the rotor, stator, and duct in determining the flow of PJP, three models are established: the R model (rotor only), the R–D model (rotor within a duct), and the PJP model (rotor and stator within a duct). Results show that the effect of the duct on the unsteady force acting on the rotor blades is weak, while the pre-swirl stator on it is strong due to the rotor–stator interference. In addition, the vortex structure of the three models are compared. The tip-duct mutual-inductance instability mode that the duct-induced vortex begins to affect adjacent tip vortices is reported. For the PJP model, a unique short-wave instability mode of the tip vortex caused by the existences of pre-swirl stator is discussed. More importantly, for the R–D and PJP model, the transition from stability to instability of the tip vortex depends on both the spiral-to-spiral distance and the strength of duct-induced vortex.
KW - Improved delayed detached eddy simulations
KW - Pumpjet propulsor
KW - The pre-swirl stator
KW - The tip vortex instability mode
UR - http://www.scopus.com/inward/record.url?scp=85112686207&partnerID=8YFLogxK
U2 - 10.1016/j.oceaneng.2021.109620
DO - 10.1016/j.oceaneng.2021.109620
M3 - 文章
AN - SCOPUS:85112686207
SN - 0029-8018
VL - 237
JO - Ocean Engineering
JF - Ocean Engineering
M1 - 109620
ER -