DESIGN AND PERFORMANCE ANALYSIS OF AEROSPIKE NOZZLE USING COMPUTATIONAL FLUID DYNAMICS

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Abstract
This paper will be describing the effects of operating altitude of aerospike nozzle to its performance using Computational Fluid Dynamics. The aerospike nozzle is designed using isentropic flow properties -such as mach number, cross-sectional area, pressure and temperature relations- as long as the flow can be idealized. If shock occurs during the flow, oblique and expansion wave relation properties will be used in order to determine the condition in the location that needs to find. The operating altitudes those will be chosen to analyze the performance of the aerospike nozzle are at sea level, at 5 km, at 10 km, and at 15 km above sea level. Each condition will affect the coefficient of thrust that have been produced by the design of aerospike nozzle. The value of thrust coefficient can measure the effectivity of the engine with aerospike nozzle. In the end of this paper, we will be able to determine the effectivity of aerospike nozzle compared to conventional nozzle.
Informasi Detil
Judul Seri -
No. Panggil -
Penerbit Indonesia Book Project : Jakarta.,
Deskripsi Fisik Hlm. 30-38:Il.; 28 Cm.
Bahasa English
ISBN/ISSN 978-602-70353-4-8
Klasifikasi NONE
Edisi Aeronautic and Space Technology....
Subyek aerospike nozzle
computational fluid dynamics
coefficient of thrust.
Pernyataan Tanggungjawab
ITB
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