基于密闭氦循环的预冷堆芯发动机关键参数对性能的影响

IF 2 Q2 ENGINEERING, MECHANICAL Frontiers in Mechanical Engineering Pub Date : 2023-07-04 DOI:10.3389/fmech.2023.1208468
Ma Tong-Ling, Jiang Xue-Feng, Liu Guo-dong, Liu Zhen-de, Gao Han, He Xue-gang, Du Peng-Cheng
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引用次数: 0

摘要

基于封闭氦(He)循环的预冷组合发动机提供高比推力和高比冲量。因此,对发动机的性能进行评估对发动机的应用和关键技术研究至关重要。本研究采用分析方法,在理想气体模型的前提下,研究了关键参数对预冷堆芯发动机性能的影响。研究结果表明,预冷堆芯发动机的比推力和比冲与气流通道的增压系数和等效比有关。增压系数的增加导致比推力和比冲量的增加。但在一定范围内,虽然比推力与内耗正相关,但比冲量却大大减小。在部件参数特定、热力循环固定的情况下,存在满足循环匹配要求的最小ER。最小电流变化率的大小与闭环效率有关。对于具有简单封闭He循环的预冷堆芯发动机,最小ER约为2.5-3.5。
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Effects of key parameters on performance of a pre-cooled core engine based on the closed helium cycle
A pre-cooled combined engine based on a closed helium (He) cycle offers high specific thrust and high specific impulse. Therefore, evaluation of the performance of such an engine is crucial for engine applications and key technology research. This study employs an analytical approach to investigate the effects of key parameters on the performance of a pre-cooled core engine, assuming a perfect gas model. The findings revealed that the specific thrust and specific impulse of the pre-cooled core engine are related to the pressurized coefficient of the airflow passage and equivalence ratio (ER). An increase in the pressurized coefficient leads to an increase in both specific thrust and specific impulse. However, within a certain range, although the specific thrust is positively correlated with the ER, the specific impulse is greatly reduced. With specific component parameters and a fixed thermodynamic cycle, a minimum ER exists, which satisfies the cycle-matching requirement. Moreover, the value of the minimum ER is related to the closed-cycle efficiency. For a pre-cooled core engine with a simple closed He cycle, the minimum ER is approximately 2.5–3.5.
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来源期刊
Frontiers in Mechanical Engineering
Frontiers in Mechanical Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
4.40
自引率
0.00%
发文量
115
审稿时长
14 weeks
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