Abnormal enhancement of separated turbulent air flow and heat transfer in inclined single-row oval-trench dimples at the narrow channel wall
被引:19
作者:
Isaev, Sergey
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机构:
Tupolev Kazan Natl Res Tech Univ, Kazan Aviat Inst, Kazan 420111, Tatarstan, Russia
St Petersburg State Univ Civil Aviat, St Petersburg 196210, RussiaTupolev Kazan Natl Res Tech Univ, Kazan Aviat Inst, Kazan 420111, Tatarstan, Russia
Isaev, Sergey
[1
,2
]
Gritckevich, Mikhail
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机构:
St Petersburg State Univ Civil Aviat, St Petersburg 196210, RussiaTupolev Kazan Natl Res Tech Univ, Kazan Aviat Inst, Kazan 420111, Tatarstan, Russia
Gritckevich, Mikhail
[2
]
Leontiev, Alexandr
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机构:
Bauman Moscow State Tech Univ, Moscow 105005, RussiaTupolev Kazan Natl Res Tech Univ, Kazan Aviat Inst, Kazan 420111, Tatarstan, Russia
Leontiev, Alexandr
[3
]
Popov, Igor
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h-index: 0
机构:
Tupolev Kazan Natl Res Tech Univ, Kazan Aviat Inst, Kazan 420111, Tatarstan, RussiaTupolev Kazan Natl Res Tech Univ, Kazan Aviat Inst, Kazan 420111, Tatarstan, Russia
Popov, Igor
[1
]
机构:
[1] Tupolev Kazan Natl Res Tech Univ, Kazan Aviat Inst, Kazan 420111, Tatarstan, Russia
[2] St Petersburg State Univ Civil Aviat, St Petersburg 196210, Russia
[3] Bauman Moscow State Tech Univ, Moscow 105005, Russia
Heat transfer enhancement;
Inclined dimples;
Narrow channels;
NUMERICAL-SIMULATION;
INTENSIFICATION;
LAMINAR;
D O I:
10.1016/j.actaastro.2019.01.033
中图分类号:
V [航空、航天];
学科分类号:
08 ;
0825 ;
摘要:
New shapes of surface vortex generators are proposed which allow improving the energy performance of channels of propulsion devices and contribute towards the safety of space flights. Abnormal enhancement of heat transfer and separated turbulent air flow in oval-trench dimples of depth 0.3 inclined at an angle of 45 degrees to the incoming flow and located in-line at the heated wall of the narrow channel is accompanied by a four-fold growth of relative negative friction and an almost five-fold increase of relative heat transfer in the separation zone. At the same time, a maximum secondary flow velocity in the vicinity of the dimple reaches a maximum flow velocity in the plane-parallel channel. A reason for the onset of this phenomenon (ultra intensification of transport processes) caused by the formation of a high pressure drop between closely spaced stagnation zones on the windward side of the dimple and a low pressure on the entrance spherical portion of the dimple is disclosed.