超临界压力下乙醇辅助烃类燃料吸热反应流动特性的可视化研究

IF 5 2区 工程技术 Q1 ENGINEERING, MECHANICAL
Zhenhua Wang , Yu Feng , Qinghang Lv , Shuai Xu , Jiang Qin
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引用次数: 0

摘要

近年来,利用乙醇辅助碳氢燃料冷却超燃冲压发动机的燃烧室壁引起了研究人员的极大关注。然而,在高温高压条件下,混合燃料经历了相变、化学反应、超临界态转变等多个复杂过程,对其吸热能力产生了重大影响。本研究通过可视化实验研究了乙醇辅助烃类燃料的催化裂化过程,并利用高速摄像机捕捉了混合燃料在不同阶段的流动行为。结果表明,根据混合燃料物理状态转变的不同,冷却过程可分为三个阶段。乙醇相变发生在第一阶段。不同压力下粘度和表面张力的差异导致多相流型的变化。定义气泡流I、气泡/段塞流I、搅拌流I和环状流I来描述混合燃料在标准大气压下的流动模式。同样,我们定义了泡状流动II、泡状/段塞流II和环空流动II来描述2.5 MPa下的流动模式。第二阶段的特点是乙醇的化学反应。一旦液体乙醇完全汽化成乙醇蒸气,具有不同亮度的折光点的出现表明乙醇裂解产生了小分子气体。超临界状态的正癸烷与气态乙醇的相界面在第三阶段发生熔合。该研究对揭示乙醇辅助烃类燃料的多相流型分布具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A visualization study on flow behavior of ethanol-assisted hydrocarbon fuel endothermic reactions under supercritical pressure
The utilization of ethanol-assisted hydrocarbon fuel for the cooling of combustor walls in scramjet engines has recently garnered significant attention from researchers. However, under high-temperature and high-pressure conditions, blended fuel undergoes multiple complex processes, including phase transitions, chemical reactions, and supercritical state transformations, which significantly influence the heat absorption capacity. In this study, the catalytic cracking process of ethanol-assisted hydrocarbon fuel was investigated through visualization experiments, and the flow behaviors of blended fuel under different stages were captured by high-speed camera. The results show that the cooling process are categorized into three stages according to different physical states transition of blended fuel. Ethanol phase transition occurs in first stage. Differences in viscosity and surface tension at different pressures result in variations of multiphase flow patterns. The bubbly flow I, bubbly/slug flow I, churn flow I, and annular flow I are defined to describe the flow patterns of blended fuel at standard atmospheric pressure. Similarly, bubbly flow II, bubbly/slug flow II, and annular flow II are defined to describe flow patterns at 2.5 MPa. The second stage is characterized by the chemical reactions of ethanol. Once liquid ethanol has completely vaporized into ethanol vapor, the appearance of refractive points with varying brightness indicates the generation of small molecular gases resulting from the ethanol cracking. The phase interface between n-decane in the supercritical state and gaseous ethanol is fused in the third stage. This study is of significance in revealing the multiphase flow pattern distribution of ethanol -assisted hydrocarbon fuel.
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来源期刊
CiteScore
10.30
自引率
13.50%
发文量
1319
审稿时长
41 days
期刊介绍: International Journal of Heat and Mass Transfer is the vehicle for the exchange of basic ideas in heat and mass transfer between research workers and engineers throughout the world. It focuses on both analytical and experimental research, with an emphasis on contributions which increase the basic understanding of transfer processes and their application to engineering problems. Topics include: -New methods of measuring and/or correlating transport-property data -Energy engineering -Environmental applications of heat and/or mass transfer
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