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portada Effect of nose bluntness Intake Features on Hypersonic Inlet Flow Field
Type
Physical Book
Language
Inglés
Pages
168
Format
Paperback
Dimensions
22.9 x 15.2 x 0.9 cm
Weight
0.23 kg.
ISBN13
9788088629955

Effect of nose bluntness Intake Features on Hypersonic Inlet Flow Field

V. B. Jaware (Author) · Akhand Publishing House · Paperback

Effect of nose bluntness Intake Features on Hypersonic Inlet Flow Field - Jaware, V. B.

Physical Book

£ 25.01

  • Condition: New
Origin: U.S.A. (Import costs included in the price)
It will be shipped from our warehouse between Monday, July 08 and Thursday, July 18.
You will receive it anywhere in United Kingdom between 1 and 3 business days after shipment.

Synopsis "Effect of nose bluntness Intake Features on Hypersonic Inlet Flow Field"

The effect of nose bluntness intake features on hypersonic inlet flow field is an important area of research for the design and optimization of hypersonic aircraft. Hypersonic aircraft operate at extremely high speeds, and the design of the intake features can have a significant impact on the performance of the aircraft. The nose bluntness of the intake features can affect the flow field characteristics, which can in turn impact the performance of the engine and the aircraft as a whole.The research on the effect of nose bluntness intake features on hypersonic inlet flow field involves the use of computational fluid dynamics (CFD) simulations to study the flow characteristics of the inlet features. The simulations take into account the geometry and the operational conditions of the inlet features to evaluate their performance. The results of the simulations can be used to optimize the design of the inlet features and improve the performance of the aircraft.The effect of nose bluntness intake features on hypersonic inlet flow field is an important area of research that has significant implications for the design of hypersonic aircraft. By understanding the flow characteristics of the inlet features, researchers can optimize the design to improve the performance of the aircraft. This can lead to increased efficiency, reduced fuel consumption, and improved safety, which are all important considerations in the design of hypersonic aircraft.

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