Effect of ribs in a suddenly expanded flow at sonic Mach number

被引:0
|
作者
Khan, Ambareen [1 ]
Khan, Sher Afghan [2 ]
Raja, Vijayanandh [3 ,4 ]
Aabid, Abdul [5 ]
Baig, Muneer [5 ]
机构
[1] Univ Sains Malaysia, Sch Aerosp Engn, George Town, Malaysia
[2] Int Islamic Univ Malaysia, Dept Mech & Aerosp Engn, Kulliyah Engn, Kuala Lumpur, Malaysia
[3] Kumaraguru Coll Technol, Dept Aeronaut Engn, Coimbatore 641049, Tamil Nadu, India
[4] Lovely Profess Univ, Div Res & Dev, Phagwara 144401, Punjab, India
[5] Prince Sultan Univ, Coll Engn, Dept Engn Management, POB 66833, Riyadh 11586, Saudi Arabia
关键词
Base pressure; Flow characteristics; Nozzle pressure ratio; Suddenly expanded flow; Rib geometry; DRAG; BASE;
D O I
10.1016/j.heliyon.2024.e30313
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
This study aims to assess the influence of a rib on the base pressure and the flow development in an abruptly expanded duct at sonic Mach number. Initially, the simulations were done to validate the experimental results, keeping all the parameters the same. Accordingly, a duct-of-area ratio of 6.25 was considered for validation. Five ribs of aspect ratios 3:1, 3:2, and 3:3 were used as a first step, and simulations were performed for the same nozzle pressure ratios. Results indicate that for an area ratio of 6.25, there is a continuous decrease in the base pressure despite the nozzles being highly under-expanded. The lower aspect ratio of the rib tends to reduce the base pressure, whereas a higher aspect ratio effectively increases the base pressure for an area ratio of 6.25. Later simulations considered a single rib instead of five ribs, varying the rib's heights from 1 mm to 5 mm. Results show that the base pressure increases considerably when rib heights are 4 mm and 5 mm. The influence of ribs at two duct diameters (25 mm and 18 mm) is studied to assess the impact of a decrease in the area ratio and, hence, a decrease in the relief available to the flow. Results of duct 18 mm show that passive control becomes very effective when a rib of 3 mm height is located at a 3D position. The differences in the base pressure, velocity, and pressure field for each case are explored. The simulation results indicate that the rib breaks the primary vortex at the base and forms multiple vortices. Turbulent kinetic energy increases in the presence of ribs more than without a rib.
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页数:17
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