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超声速燃烧室内非等距排列喷油嘴对燃油喷射的影响。

Influence of the non-equal aligned nozzles for fuel injection inside the supersonic combustion chamber.

作者信息

Fan Zhongmian, Wang Lingxiao, Xu Fei, Zhang Xiuli, Xie Baoling, Wen Yushi, Li He, Aminian Saman

机构信息

School of Chemical Equipment, Shenyang University of Technology, Liaoyang, 111003, Liaoning, China.

Colleges of Engineering, Science and Research Branch, Islamic Azad University, Tehran, Iran.

出版信息

Sci Rep. 2024 Jun 4;14(1):12812. doi: 10.1038/s41598-024-63544-4.

Abstract

The importance of fuel mixing for the progress of the scramjet engine is indisputable. The present article shows the importance of the non-equal multi-injector system for effective fuel distribution and flame holding inside the combustion segment of a scramjet engine. The supersonic air and fuel jet flow in the non-equal nozzle arrangement is simulated via computational fluid dynamic technique. Two injector types of circular and rectangular nozzle have been analyzed to attain flow characteristics of hydrogen jets at supersonic cross flow. Mach contour is also analyzed for these jet arrangements to show the interface of the jet in the non-equal jet arrangement. Besides, addition of internal air jet is also simulated and evaluated in this research. Our investigation shows that the diffusion height of the fuel jet is higher when a rectangular non-equal nozzle is applied. The circular nozzle is more active in the spreading of the fuel in the combustor and the use of an internal air jet effectively increases fuel in a combustor of the scramjet.

摘要

燃料混合对超燃冲压发动机发展的重要性是无可争议的。本文展示了非等距多喷注器系统对于超燃冲压发动机燃烧段内有效燃料分布和火焰稳定的重要性。通过计算流体动力学技术模拟了非等距喷嘴布置中的超音速空气和燃料射流流动。分析了圆形和矩形两种喷嘴类型,以获得超音速横流中氢气射流的流动特性。还对这些射流布置的马赫轮廓进行了分析,以展示非等距射流布置中射流的界面。此外,本研究还对内部空气射流的添加进行了模拟和评估。我们的研究表明,应用矩形非等距喷嘴时燃料射流的扩散高度更高。圆形喷嘴在燃烧室内燃料扩散方面更具活性,并且内部空气射流的使用有效地增加了超燃冲压发动机燃烧室内的燃料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/effd/11150413/7e90df7b494a/41598_2024_63544_Fig1_HTML.jpg

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