Pages that link to "Item:Q1655989"
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The following pages link to Smoothed particle hydrodynamics with kernel gradient correction for modeling high velocity impact in two- and three-dimensional spaces (Q1655989):
Displaying 31 items.
- Examining a modified algorithm of smoothed particle hydrodynamics for a high-velocity perforation of an aluminum beam (Q400135) (← links)
- Study of dynamic behavior of ceramic-metal FGM under high velocity impact conditions using CSPM method (Q450137) (← links)
- Heuristic acceleration correction algorithm for use in SPH computations in impact mechanics (Q658696) (← links)
- SPH for high velocity impact computations (Q1371803) (← links)
- A generalized particle algorithm for high velocity impact computations (Q1570314) (← links)
- Predicting the damage on a target plate produced by hypervelocity impact using a decoupled finite particle method (Q1634629) (← links)
- The elastic dynamics analysis of FGM using a meshless RRKPM (Q2040813) (← links)
- A new SPH density formulation for 3D free-surface flows (Q2072316) (← links)
- An artificial damping method for total Lagrangian SPH method with application in biomechanics (Q2085867) (← links)
- Numerical investigation on the water entry of a 3D circular cylinder based on a GPU-accelerated SPH method (Q2134581) (← links)
- 3D smooth particle hydrodynamics modeling for high velocity penetrating impact using GPU: application to a blunt projectile penetrating thin steel plates (Q2179205) (← links)
- An integrated smoothed particle hydrodynamics method for numerical simulation of the droplet impacting with heat transfer (Q2223948) (← links)
- A decoupled finite particle method for modeling incompressible flows with free surfaces (Q2295962) (← links)
- High velocity impact of metal sphere on thin metallic plates: a comparative smooth particle hydrodynamics study (Q2576307) (← links)
- Development of time-space adaptive smoothed particle hydrodynamics method with Runge-Kutta Chebyshev scheme (Q2662410) (← links)
- FSISPH: an SPH formulation for impacts between dissimilar materials (Q2675606) (← links)
- Modeling surface tension in smoothed particle hydrodynamics using Young-Laplace pressure boundary condition (Q2686906) (← links)
- AN IMPLEMENTATION OF THE SMOOTHED PARTICLE HYDRODYNAMICS FOR HYPERVELOCITY IMPACTS AND PENETRATION TO LAYERED COMPOSITES (Q2971823) (← links)
- A kernel free particle-finite element method for hypervelocity impact simulation (Q3372437) (← links)
- Numerical Study on High Velocity Impact Welding Using a Modified SPH Method (Q4559362) (← links)
- The Hermit-Type Reproducing Kernel Particle Method for Elasticity Problems (Q4559364) (← links)
- Viscous Flow Past a NACA0012 Foil Below a Free Surface Through the Delta-Plus-SPH Method (Q4559369) (← links)
- A Development of a SPH Model for Simulating Surface Erosion by Impact(s) of Irregularly Shaped Particles (Q4962577) (← links)
- Smoothed Particle Hydrodynamics Simulation of Liquid Drop Impinging Hypoelastic Surfaces (Q5111947) (← links)
- Numerical modeling of hypervelocity impacts on carbon fiber reinforced plastics using a GPU-accelerated SPH model (Q6084781) (← links)
- A massive MPI parallel framework of smoothed particle hydrodynamics with optimized memory management for extreme mechanics problems (Q6147791) (← links)
- A hybrid finite volume-smoothed particle hydrodynamics approach for shock capturing applications (Q6153866) (← links)
- Contact framework for total Lagrangian smoothed particle hydrodynamics using an adaptive hybrid kernel scheme (Q6499909) (← links)
- Meshfree modeling of a fluid-particle two-phase flow with an improved SPH method (Q6555208) (← links)
- A contact method for B-spline material point method with application in impact and penetration problems (Q6558982) (← links)
- Numerical simulation of the damage and ignition responses of high explosives under low-velocity impact using the SPH method (Q6583893) (← links)