Back Cover, Volume 4, Number 3, July 2025

IF 9.1
Droplet Pub Date : 2025-07-21 DOI:10.1002/dro2.70023
Yuxin Song, Zuohua Huang, Chenglong Tang
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引用次数: 0

Abstract

Back Cover: The cover image is based on the Research Article Hypergolic droplet–film interaction dynamics at high temperatures by Song et al.

Cover description: This cover image illustrates the phenomenon of chemically induced micro-explosions generated when an oxidizer droplet impacts a liquid fuel film, accompanied by the formation of numerous high-temperature micro-droplets. Our research clarifies the reactive processes occurring between the coolant films on the thrust chamber walls of liquid rocket engines and the settling oxidizer droplets from the mainstream region, and how these reactions affect the cooling efficiency of the liquid film. (DOI: 10.1002/dro2.70003)

Abstract Image

封底,第四卷,第三期,2025年7月
封底:封面图片基于Song等人的研究文章《高温下的自燃液滴-膜相互作用动力学》。封面说明:该封面图片说明了当氧化剂液滴撞击液体燃料膜时产生的化学诱导微爆炸现象,伴随着大量高温微液滴的形成。本研究阐明了液体火箭发动机推力室壁面冷却液膜与主流区域沉淀的氧化液滴之间发生的反应过程,以及这些反应对液体火箭发动机推力室壁面冷却液膜冷却效率的影响。(DOI: 10.1002 / dro2.70003)
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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来源期刊
CiteScore
6.60
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