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    张阿漫

    • 教授      博士生导师      硕士生导师
    • 教师英文名称:A-Man Zhang
    • 教师拼音名称:ZAM
    • 所在单位:船舶工程学院
    • 性别:男
    • 学位:博士
    • 在职信息:在职
    • 学科:船舶与海洋工程
    • 学科:船舶与海洋工程

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    论文成果

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    • [1] A theoretical model for compressible bubble dynamics considering phase transition and migration,
    • [2] Cavitation bubble dynamics inside a droplet suspended in a different host fluid,
    • [3] Jetting enhancement from wall-proximal cavitation bubbles by a distant wall,
    • [4] On the interfacial instabilities of a ventilation cavity induced by gaseous injection into liquid cr,
    • [5] Investigation of free surface effect on the cavity expansion and contraction in high-speed water ent,
    • [6] Vertically neutral collapse of a pulsating bubble at the corner of a free surface and a rigid wall,
    • [7] Investigation of hydrodynamics of water impact and tail slamming of high-speed water entry with a no,
    • [8] 3D model for inertial cavitation bubble dynamics in binary immiscible fluids,
    • [9] Theoretical study on bubble dynamics under hybrid-boundary and multi-bubble conditions using the uni,
    • [10] Interaction of cavitation bubbles with the interface of two immiscible fluids on multiple time scale,
    • [11] Jetting and migration of a laser-induced cavitation bubble in a rectangular channel,
    • [12] Non-modal growth of finite-amplitude disturbances in oscillatory boundary layer,
    • [13] Multiphase large-eddy simulations of human cough jet development and expiratory droplet dispersion,
    • [14] On nonlocal cohesive continuum mechanics and Cohesive Peridynamic Modeling (CPDM) of inelastic fract,
    • [15] An improved model for compressible multiphase flows based on Smoothed Particle Hydrodynamics with en,
    • [16] An algorithm for implementing a boundary viscous force with single-layer wall particles based on WCS,
    • [17] Weighted ghost fluid discontinuous Galerkin method for two medium problems,
    • [18] An accurate SPH Volume Adaptive Scheme for modeling strongly compressible multiphase flows,
    • [19] Fully coupled model for simulating highly nonlinear dynamic behaviors of a bubble near an elastic-pl,
    • [20] Updated Lagrangian Particle Hydrodynamics (ULPH) modeling and simulation of multiphase flows,
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