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Application of Smoothed Particle Hydrodynamics in biomechanics: advanced procedure for discretization of complex biological shapes into pseudo-particles

机译:平滑粒子流体动力学在生物力学中的应用:用于将复杂生物形状的离散化进入伪粒子的先进程序

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Smoothed Particle Hydrodynamics is meshless numerical method which is based on continuum mechanics approach, capable of analyzing stresses in both solids and fluids as well as stresses that are result of solid-fluid interaction, with very versatile applications, and yet it' is not sufficiently implemented in biomechanics due to difficulties of node grid generation from complex shape objects. This paper presents multiblock procedure for generation of pseudo-particles which are used in Smoothed Particle Hydrodynamics for representation of discretized parts of analyzed continua. This procedure enables creation of evenly sized pseudo-particles even for the very irregular shaped object such are organs, bones or blood vessels which are analyzed in biomechanics.
机译:平滑的粒子流体动力学是基于连续力学方法的无丝绒数值方法,能够分析固体和流体中的应力以及具有非常通用的应用的固体流体相互作用,尚未充分实施由于来自复杂形状对象的节点网格困难,在生物力学中。本文介绍了用于产生伪颗粒的多嵌段程序,其用于平滑粒子流体动力学,用于表示分析的连续核果的离散部分。该程序即使对于非常不规则的形状的物体,该程序也能够创建均匀大小的伪粒子,例如在生物力学中分析的器官,骨骼或血管。

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