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High-speed water impacts of flat plates in different ditching configuration through a Riemann--ALE SPH model 被引量:5
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作者 S.Marrone A.Colagrossi +2 位作者 L.Chiron M.De Leffe D.Le Touzé 《Journal of Hydrodynamics》 SCIE EI CSCD 2018年第1期38-48,共11页
The violent water entry of flat plates is investigated using a Riemann-arbitrary Eulerian-Lagrangian(ALE) smoothed particle hydrodynamics(SPH) model. The test conditions are of interest for problems related to air... The violent water entry of flat plates is investigated using a Riemann-arbitrary Eulerian-Lagrangian(ALE) smoothed particle hydrodynamics(SPH) model. The test conditions are of interest for problems related to aircraft and helicopter emergency landing in water. Three main parameters are considered: the horizontal velocity, the approach angle(i.e., vertical to horizontal velocity ratio) and the pitch angle, a. Regarding the latter, small angles are considered in this study. As described in the theoretical work by Zhao and Faltinsen(1993), for small a a very thin, high-speed jet of water is formed, and the time-spatial gradients of the pressure field are extremely high. These test conditions are very challenging for numerical solvers. In the present study an enhanced SPH model is firstly tested on a purely vertical impact with deadrise angle α=4°. An in-depth validation against analytical solutions and experimental results is carried out, highlighting the several critical aspects of the numerical modelling of this kind of flow, especially when pressure peaks are to be captured. A discussion on the main difficulties when comparing to model scale experiments is also provided. Then, the more realistic case of a plate with both horizontal and vertical velocity components is discussed and compared to ditching experiments recently carried out at CNR-INSEAN. In the latter case both 2-D and 3-D simulations are considered and the importance of 3-D effects on the pressure peak is discussed for α=4° and α=10°. 展开更多
关键词 aircraft ditching high-speed water entry smoothed particle hydrodynamics(SPH)
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飞机波浪水面迫降过程中极限冲击载荷数值研究 被引量:2
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作者 赵芸可 刘沛清 《北京航空航天大学学报》 EI CAS CSCD 北大核心 2021年第5期1025-1037,共13页
针对飞机在波浪水面迫降过程中机身所受的极限冲击载荷大小及其物理成因问题,采用数值模拟方法展开研究,结合有限体积法和流体体积(VOF)法捕捉自由面,采用六自由度(6DOF)模型和整体运动网格(GMM)处理水面与飞机之间的相对运动,模拟飞机... 针对飞机在波浪水面迫降过程中机身所受的极限冲击载荷大小及其物理成因问题,采用数值模拟方法展开研究,结合有限体积法和流体体积(VOF)法捕捉自由面,采用六自由度(6DOF)模型和整体运动网格(GMM)处理水面与飞机之间的相对运动,模拟飞机的迫降过程。通过选择飞机相对水面下沉速度最大的波面相位作为迫降触水位置,预报机身所受的极限冲击载荷大小。结果表明:在波浪水面迫降的触水阶段中,机身遭遇了平静水面未预见的冲击峰,同时冲击峰值大小与飞机相对水面的下沉速度有关。此外,对比了在5种不同波高海况下飞机迫降的运动姿态和过载变化历程,给出了波高对极限冲击载荷和其余各参数峰值的影响规律,为飞机载荷分布设计提供参考依据。 展开更多
关键词 水上迫降 波浪水面 冲击载荷 计算流体力学 流体体积(VOF)
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