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Experimental investigation on upstream fuel injection technique of RBCC scramjet mode

机译:RBCC Scramjet模式上游燃油喷射技术的实验研究

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摘要

Upstream fuel injection in the inlet/isolator is a promising fueling strategy for the reliable operation of rocket based combined-cycle (RBCC) engine scramjet mode, where fuel must be injected and mixed with the air in an extremely short time. A ground direct-connect test system was used to simulate the condition of incoming air and the combustion in combustor. Experiments have been conducted to investigate the upstream fuel injection of heated/non-heated kerosene at Mach 5.5, and appropriate fuel injection strategy has been proposed according to the result. An observation window was installed at the combustor wall surface to study the flame propagation. The attained results reveal that high combustor pressure and efficient combustion can be achieved by upstream fuel injection coupled with the injection of pylons positioned downstream for non-heated kerosene, while high combustor pressure can be achieved by only upstream fuel injection with heated kerosene. Resident flame can be formed and hold between the central strut base and pylons when the primary rocket is turned off.
机译:入口/隔离器中的上游燃油喷射是一种有望的加油策略,可用于基于火箭的组合循环(RBCC)发动机扰流模式的可靠运行,其中燃料必须在极短的时间内与空气混合。接地直接连接测试系统用于模拟进入空气的条件和燃烧器中的燃烧。已经进行了实验以研究Mach 5.5的上游燃料注入加热/未加热煤油的喷射,并根据结果提出了适当的燃料喷射策略。在燃烧器壁表面上安装了观察窗,以研究火焰繁殖。达到的结果表明,通过向上燃料喷射的上游燃料喷射可以实现高燃烧器压力和有效燃烧,其注射位于未加热的煤油下游的塔架,而仅通过与加热的煤油注入的上游燃料喷射来实现高燃烧室压力。当主火箭关闭时,可以在中央支柱基座和塔架之间形成静置火焰并保持。

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