Influence of coolant multi-jets on heat reduction of nose cone with blunt spike at hypersonic flow
Влияние многопоточных охлаждающих струй на снижение нагрева носовой части с тупым шипом при гиперзвуковом потоке
2022-09-16
SCID: 54.1/4ecn4a89
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Helium vs carbon dioxide coolingcoolant multi-jetshypersonic flownose cone with blunt spikesingle lateral jet from spike tip
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Abstract (AI)
Abstract The importance of the cooling system for the design of the forebody of high-speed vehicles is significant due to severe aerodynamic heating at hypersonic flight. In the present study, injection of multi and single-coolant jets on the thermal performance of forebody design of nose cone with the cut spike is thoroughly investigated at hypersonic flow. A three-dimensional model of the blunt cone is presented for computational investigations of proposed jet and spike configurations. Injection of two coolant gasses (Helium and carbon dioxide) into the cooling system of the nose cone with a blunt spike is investigated. Three locations for both opposing and lateral jets are compared to find the efficient jet location. Our results indicate that a single lateral jet injected from the tip of the spike is more efficient for heat reduction. A comparison of the multiple injection system also shows that the heat reduction of the helium gas is about 15% more than CO2 jets.
Key Findings
1
A single lateral coolant jet injected from the tip of the spike is the most efficient configuration for heat reduction among tested options.
2
A three-dimensional blunt cone model with spike and various jet configurations was used to compare thermal performance of opposing and lateral jets at three locations.
3
Helium coolant jets achieve about 15% greater heat reduction than carbon dioxide jets in the multiple-injection system.
4
Injection of coolant jets (single and multi) into the nose cone with a blunt cut spike was computationally investigated for hypersonic flow heat reduction.
Research Object
Nose cone with a blunt (cut) spike in hypersonic flow with coolant multi-jet and single-jet injection
Research Subject
Thermal performance / heat reduction of the nose-cone forebody produced by different coolant jet configurations (single lateral, opposing, multi-jet) and gases (Helium vs CO2) at hypersonic flow
Publication Details
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2022-09-16
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