同轴支撑喷油器SCRAM喷射燃烧室的计算研究

K. M. K. Babu, N. Reddy, P. Manivannan
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引用次数: 0

摘要

与燃气涡轮发动机相比,超声速燃烧冲压发动机(SCRAM)的几何结构相对简单,因为它没有运动部件,但与之相关的流动物理却相当复杂。在高速飞行时,大气空气在燃烧室中的停留时间很短,大约为毫秒,在这短时间内,注入空气中的燃料必须有效地混合和反应,在燃烧室中释放能量。通过快速有效地混合燃料和氧化剂,可以使燃烧室的长度和重量最小化,产生的推力最大化。本研究主要采用同轴型喷油器,研究了短时间内固定喷射发动机的特性。结果表明,与圆形喷油器相比,同轴射流在喷油点处的湍流动能提高了4倍。由于紊流动能是指示燃料与氧化(空气)混合的参数之一,因此采用同轴支板喷油器可以增强燃料与氧化(空气)的混合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computational study of SCRAM Jet combustor with a co-axial strut fuel injector
The geometric configuration of Supersonic Combustion Ramjet (SCRAM) is relatively simple when compared to gas turbine engines as there are no moving parts, but the flow physics associated with it is quite complex. At high speeds of flight the residence time of the atmospheric air in the combustion chamber is very low it is of the order of milliseconds, within this short time the fuel injected in to air must efficiently mix and react to release energy in the combustion chamber. The Combustor length and Weight can be minimized and Thrust produced can be maximized by rapid and effective mixing of fuel and oxidizer. The present study focuses on using coaxial type fuel injectors and studies the characteristics of SCRAM Jet Engines. From the results obtained it is observed that the turbulence kinetic energy of the coaxial jets is improved by the four times at the point of fuel injection when compared with the circular jet injector. As Turbulent kinetic energy is one of the parameter indicating the mixing of the fuel and oxidized (air), it is concluded that by employing the coaxial strut fuel injectors the mixing of fuel and oxidized can be enhanced.
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