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Interaction Mechanisms between Natural Debris Flow and Rigid Barrier Deflectors:A New Perspective for Rational Design and Optimal Arrangement
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作者 Yu Huang Beilei Liu +1 位作者 Dianlei Feng Hao Shi 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第5期1679-1699,共21页
Rigid barrier deflectors can effectively prevent overspilling landslides,and can satisfy disaster prevention requirements.However,the mechanisms of interaction between natural granular flow and rigid barrier deflector... Rigid barrier deflectors can effectively prevent overspilling landslides,and can satisfy disaster prevention requirements.However,the mechanisms of interaction between natural granular flow and rigid barrier deflectors require further investigation.To date,few studies have investigated the impact of deflectors on controlling viscous debris flows for geological disaster prevention.To investigate the effect of rigid barrier deflectors on impact mechanisms,a numerical model using the smoothed particle hydrodynamics(SPH)method with the Herschel–Bulkley model is proposed to simulate the interaction between natural viscous flow and single/dual barriers with and without deflectors.This model was validated using laboratory flume test data from the literature.Then,the model was used to investigate the influence of the deflector angle and multi-barrier arrangements.The optimal configuration of multi-barriers was analyzed with consideration to the barrier height and distance between the barriers,because these metrics have a significant impact on the viscous flow pile-up,run-up,and overflow mechanisms.The investigation considered the energy dissipation process,retention efficiency,and dead-zone formation.Compared with bare barriers with similar geometric characteristics and spatial distribution,rigid barriers with deflectors exhibit superior effectiveness in preventing the overflow and overspilling of viscous debris flow.Recommendations for the rational design of deflectors and the optimal arrangement of multi-barriers are provided to mitigate geological disasters. 展开更多
关键词 Rigid barrier deflectors deflector angle single-barrier dual-barrier arrangements viscous debris flow over-spilling delta-plus-sph
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翼型绕流的多级分辨率光滑粒子流体动力学数值模拟研究
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作者 黄晓婷 孙鹏楠 +2 位作者 吕鸿冠 殷晓瑞 董嘉徐 《西北工业大学学报》 EI CAS CSCD 北大核心 2022年第3期661-669,共9页
应用考虑流场真实黏性的多级粒子分辨率光滑粒子流体动力学(smoothed particle hydrodynamics,SPH)方法对不同雷诺数下的翼型绕流问题开展了数值模拟和验证。在SPH粒子法框架中实现拉格朗日拟序结构可视化,实现漩涡细节的重现。针对SPH... 应用考虑流场真实黏性的多级粒子分辨率光滑粒子流体动力学(smoothed particle hydrodynamics,SPH)方法对不同雷诺数下的翼型绕流问题开展了数值模拟和验证。在SPH粒子法框架中实现拉格朗日拟序结构可视化,实现漩涡细节的重现。针对SPH模拟高雷诺数翼型绕流时出现的数值不稳定性,采用张力不稳定性控制技术和粒子位移修正技术加以克服,提高了压力与速度场的计算精度。计算结果表明:SPH方法能够实现翼型绕流问题速度场与压力场的精确计算,并进行良好的受力监测与预报。相对于传统基于欧拉涡量场的漩涡捕捉方法,SPH方法中捕捉的拉格朗日拟序结构也能有效地呈现流场漩涡特征和演化过程,说明SPH方法在模拟考虑真实黏性边界层和漩涡运动的流体动力学问题研究中具有一定的特色。此外,拍动翼型绕流的数值模拟结果还体现了SPH方法在处理带运动边界绕流问题的便利性。 展开更多
关键词 δ^(%plus%)-sph 多级粒子分辨率技术 拉格朗日拟序结构 翼型绕流
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