斜爆轰波面动力学及起爆区波系研究 | |
Alternative Title | Investigation on Dynamics and Initiation Wave Systems of Oblique Detonation Wave |
杨鹏飞![]() | |
Thesis Advisor | 姜宗林 ; 王春 |
2021-05-18 | |
Degree Grantor | 中国科学院大学 |
Place of Conferral | 北京 |
Subtype | 博士 |
Degree Discipline | 流体力学 |
Keyword | 斜爆轰 起爆结构 动态特性 非定常流动 稳定性 |
Abstract | 高超声速飞行器在向更高马赫数和更强机动性发展,基于爆燃燃烧的传统动力技术难以满足这一需求。利用斜爆轰波进行燃烧组织的斜爆轰发动机因具有能量转换迅速、热循环效率高、飞行速域宽广等特点而引起越来越多的关注,是高超声速推进技术的前沿领域。研究人员借助近年来发展的计算流体力学方法,结合有限的实验结果和理论分析,在斜爆轰的流动与燃烧机理认识方面取得了进展。但目前斜爆轰发动机仍处于实验室研制状态,其工程化应用过程中需要关键基础科学理论的支撑。 激波与化学反应的强耦合作用导致爆轰波本身具有极强的不稳定性特征,保证斜爆轰波在发动机燃烧室内稳定燃烧是其工程应用的关键。这涉及到两个关键问题:一是斜爆轰的起爆波系的稳定性特征;二是外界扰动作用下爆轰波面的燃烧组织。前者直接决定斜爆轰能否在燃烧室内驻定,后者则直接影响发动机的推进性能。本文面向斜爆轰波在高超声速推进系统中的应用,针对斜爆轰发动机所涉及到的关键流体力学问题,研究斜爆轰波的起爆结构的失稳特性和波面动态特征,相关的研究成果将为斜爆轰发动机燃烧室的设计和斜爆轰波的调控提供科学依据。主要研究内容和创新性成果如下:
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Other Abstract | Hypersonic aircraft is developing toward a higher Mach number and super maneuverability, but the traditional propulsion system based on deflagration combustion is hard to satisfy the requirements. The oblique detonation engine (ODE) has the characteristics of rapid energy conversion, high thermodynamic cycle efficiency, and wide flight speed range, which has attracted increasing attention. An oblique detonation wave (ODW) in an ODE combustor is used to burn fuels under a hypersonic inflow. The ODE is one of the developing research fields in air-breathing hypersonic propulsion technology. With the development of computational fluid dynamics, researchers have made significant progress in recent years. Deeper insight into the flow and combustion mechanism of oblique detonation combustion is obtained by combining with the limited experimental results. However, the ODE is still in the early stages and the practical utility of ODW is a big challenge for a brief spell. The basic scientific theory plays a supporting role in the engineering application of ODE. Since the strong coupling of shock wave and chemical reaction, detonation combustion is a natural instability entity. The standing of oblique detonation in a combustor is the principal determinant of ODE. There exist two key scientific problems. The first one is the morphology and stable features of the ODW initiation zone and the other one is the dynamic features of detonation front. The former is closely associated with the standing of an oblique detonation in a combustion chamber, and the latter has a huge effect on the propulsion performance of the ODE. Considering the application of oblique detonation waves in the hypersonic propulsion system, we focus on the key fluid mechanics of ODE. The instability characteristics of initiation wave systems and dynamic features of the wavefront are studied in this paper. The related research results could not only provide a scientific basis for the design of the combustion chamber but also provide insight into physical mechanism of detonation combustion. The main research contents and innovative results are summarized as:
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Language | 中文 |
Document Type | 学位论文 |
Identifier | http://dspace.imech.ac.cn/handle/311007/86560 |
Collection | 高温气体动力学国家重点实验室 |
Corresponding Author | 杨鹏飞 |
Recommended Citation GB/T 7714 | 杨鹏飞. 斜爆轰波面动力学及起爆区波系研究[D]. 北京. 中国科学院大学,2021. |
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博士学位论文_杨鹏飞.pdf(36376KB) | 学位论文 | 开放获取 | CC BY-NC-SA | Application Full Text |
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