基于ALE方法的圆柱入水固液分离特性研究OA
Research on characterization of solid-liquid separation of cylindrical water entry based on the ALE method
圆柱入水过程中的固液分离及自由液面形态演化与表面粗糙度密切相关.基于考虑粗糙表面摩擦特性的任意拉格朗日—欧拉(ALE)法,建立粗糙圆柱垂直入水及斜入水冲击的有限元模型,探究圆柱入水分离位置和自由液面形态特征,并将模拟结果与试验进行对比,以验证该数值方法的有效性.在此基础上,重点分析不同粗糙度和入水速度对圆柱入水冲击响应及固液分离特性的影响规律.结果表明:通过ALE方法模拟圆柱入水过程自由液面变化与试验吻合较好,粗糙表面圆柱入水时其固—液—气三相接触线上移速度低于光滑表面,液面更容易与圆柱表面分离;随着粗糙度的减小,分离角呈现先增大后减小再增大的变化趋势;随着入水速度的增大,圆柱入水分离角均减小.
The separation of the solid-liquid interface and the morphological evolution of the free surface during cyl-inder water entry are closely correlated with surface roughness.Based on the Arbitrary Lagrangian-Eulerian(ALE)method,which accounts for the friction characteristics of rough surfaces,this paper establishes finite ele-ment models for the vertical and oblique water entry of rough cylinders.The separation position and the characteris-tics of the free surface morphology are investigated.The validity of this numerical method is verified by comparing the simulation results with experimental data.Furthermore,the study focuses on analyzing the effects of varying surface roughness and entry velocities on the impact response and flow separation characteristics of the cylinder.The results show that the free liquid surface change of the cylinder water entry process simulated by the ALE meth-od is in good agreement with the test,and the upward velocity of the solid-liquid-gas three-phase contact line of the cylinder water entry on the rough surface is lower than that on the smooth surface,so that the liquid surface is easier to be separated from the surface of the cylinder;as the roughness decreases,the separation angle exhibits a trend of initially increasing,then decreasing,and finally increasing again;as the water entry velocity increases,the separation angle of the cylinder consistently decreases.
成朝辉;万小豆;任选其;徐绯;惠旭龙;李肖成
西北工业大学 航空学院,西安 710072西北工业大学 航空学院,西安 710072强度与结构完整性全国重点实验室,西安 710072||中国飞机强度研究所,西安 710065西北工业大学 航空学院,西安 710072||强度与结构完整性全国重点实验室,西安 710072强度与结构完整性全国重点实验室,西安 710072||中国飞机强度研究所,西安 710065强度与结构完整性全国重点实验室,西安 710072||中国飞机强度研究所,西安 710065
航空航天
任意拉格朗日—欧拉法圆柱入水流固耦合冲击响应粗糙度
Arbitrary Lagrangian-Eulerian(ALE)methodwater entry of cylindersfluid-solid couplingimpact responseroughness
《航空工程进展》 2026 (2)
62-68,7
国家自然科学基金(12272320)
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