融化率对冰晶黏附特性影响的实验研究OA
Experimental assessment on effect of melting ratio on ice particle adhesion behavior
冰晶结冰会严重影响航空发动机正常运行,威胁飞行安全,而部分融化冰晶的黏附特性是影响该问题的核心环节.现有研究尚不明确冰晶黏附机理,且液态水对黏附特性的影响规律仍不清晰.为此,设计并搭建了部分融化冰晶撞击黏附实验台,开展了不同冰晶融化率水平、撞击速度和粒子直径的冰晶撞击黏附实验,结合理论分析与实验观测,揭示了残留冰锥的形成机理,并完成了其三维形态的定性与定量分析.进一步揭示了融化率对黏附特性的影响机制,较低融化率水平可促进冰锥形成,过高的融化率水平抑制冰锥形成,冰锥形成概率随融化率的升高呈先升高后降低的趋势.基于此拟合了冰锥形成概率的经验模型,建立了截断常数与无量纲水膜厚度的关联式.为深入理解冰晶黏附机理提供了参考,同时为航空发动机结冰防护相关黏附模型的进一步构建提供了理论基础和数据支撑.
Ice crystal icing seriously affects the normal operation of aero-engines,posing a threat to flight safety.The adhesive properties of partially melted ice particles constitute the core factor influencing this problem.Existing research has yet to clarify their adhesion mechanism,and the influence law of liquid water on adhesion properties remains un-clear.To address this,this study designed and constructed an experimental setup for the impact and adhesion of par-tially melted ice particles.Adhesion experiments were conducted under varying impact velocities,particle diameters,and melt ratio levels.By combining theoretical analysis and experimental observations,the formation mechanism of residual ice cones was revealed,and their three-dimensional morphology was subjected to qualitative and quantitative analysis.The study further clarified the influence mechanism of melt ratio on adhesion properties:lower melt ratios promote ice cone formation,while excessively high melt ratios inhibit it.The ice cone formation probability exhibits an initial increase followed by a decrease as the melt ratio rises.Based on the above findings,an empirical model was developed to fit the ice cone formation probability,establishing a correlation between the truncation constant and the dimensionless water film thickness.This study provides insights into the adhesion mechanism of partially melted ice particles and offers theoretical foundations and data support for developing adhesion models relevant to aviation engine anti-icing systems.
刘宗辉;卜雪琴;包佳仪;林贵平;马奎元;文东升
北京航空航天大学 航空科学与工程学院,北京 100191||北京航空航天大学 国际创新研究院,杭州 311115北京航空航天大学 航空科学与工程学院,北京 100191北京航空航天大学 航空科学与工程学院,北京 100191北京航空航天大学 国际创新研究院,杭州 311115北京航空航天大学 国际创新研究院,杭州 311115慕尼黑工业大学 热力学研究所,加兴 85747
航空航天
冰晶结冰冰晶黏附冰晶融化黏附特性残留冰锥
ice crystal icingice crystal adhesionice crystal meltingadhesion characteristicsresidual ice cones
《航空学报》 2026 (16)
140-152,13
国家自然科学基金(52272428)国家科技重大专项(J2019-Ⅲ-0010-0054)高等学校学科创新引智基地(B18002) National Natural Science Foundation of China(52272428)National Science and Technology Major Project(J2019-Ⅲ-0010-0054)the"111 Center"(B18002)
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