Experimental Study on the Performance of a Rotating Detonation Combustor with Different Outlet Restrictions

Zhongtian Jiao, Ke Wang, Zhicheng Wang, Minghao Zhao, W. Fan
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Abstract

Outlet restrictions, usually appear as geometric throats, are commonly used in increasing combustor pressure and enhancing propulsive performance. To investigate the influence of outlet restrictions on the performance of the rotating detonation combustor (RDC), three throats with a convergence ratio of 0.6, 0.8, and 1.0, respectively, were used in this study. Normalized thrust was utilized to evaluate the propulsive performance. The results show that single-wave mode will be obtained when the mass flow rate exceeds 100 g/s, and the wave velocity is close to the estimated theoretical value. Thrust is increased when a smaller throat is employed, while normalized thrust remains nearly constant. In addition, that detonation waves propagate well in the RDC is not a sufficient condition for an RDC to achieve its ideal performance, inlet restrictions rather than outlet restriction, might play a more important role in achieving the pressure gain.
不同出口限制下旋转爆轰燃烧室性能的实验研究
出口限制通常表现为几何喉道,通常用于增加燃烧室压力和提高推进性能。为了研究出口限制对旋转爆震燃烧室(RDC)性能的影响,本研究采用了收敛比分别为0.6、0.8和1.0的三个喉道。采用归一化推力来评价推进性能。结果表明,当质量流量超过100 g/s时,将出现单波模式,且波速接近理论值。当采用较小的喉道时,推力增加,而标准化推力几乎保持不变。此外,爆震波在RDC内传播良好并不是RDC达到理想性能的充分条件,进口限制而不是出口限制可能在实现压力增益方面发挥更重要的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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