Simulation of high velocity concrete fragmentation using SPH/MLSPH
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- Type
- article
- Published
- 2003-03-14
- Cited by
- 268
- References
- 37
- OpenAlex
- https://openalex.org/W1990600351
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:119799557
Keywords
Smoothed-particle hydrodynamics, Explosive material, Fragmentation (computing), Isotropy, Structural engineering
References
- Adaptive Kopplung des Netzfreien SPH-Verfahrens mit Finiten Elementen zur Berechnung von Impaktvorgaengen(Adaptive Coupling of the Mesh-Free SPH-Method with Finite Elements for the Calculation of Impact Events)
- An analysis of smoothed particle hydrodynamics
- Normalized SPH with stress points
- Parallel strategies for crash and impact simulations
- Extrapolating B splines for interpolation
- Kernel estimates as a basis for general particle methods in hydrodynamics
- A generalized particle algorithm for high velocity impact computations
- Contact-impact simulations on massively parallel SIMD supercomputers
- An introduction to SPH
- Properties of chemical explosives and explosive simulants
- Smoothing and accelerated computations in the element free Galerkin method
- Consistent pseudo-derivatives in meshless methods
- Recent improvements in SPH modeling of hypervelocity impact
- Variational and momentum preservation aspects of Smooth Particle Hydrodynamic formulations
- Contact-impact algorithms on parallel computers
- An Elastic-Fracture Model for Concrete
- Shock simulation by the particle method SPH
- MOVING-LEAST-SQUARES-PARTICLE HYDRODYNAMICS-I. CONSISTENCY AND STABILITY
- A numerical approach to the testing of the fission hypothesis.
- NORMALIZED SMOOTHING FUNCTIONS FOR SPH IMPACT COMPUTATIONS
Cited by
- Micromechanical Study of Rock Fracture and Fragmentation under Dynamic Loads using Discrete Element Method
- Comportement à rupture des structures : description à deux échelles des mécanismes locaux appliquée aux matériaux fragiles renforcés
- Meshless Analysis of Ductile Failure
- Numerical simulation of the complete rock blasting response by SPH-DAM-FEM approach
- Predicting dynamic fracture in viscoplastic materials using Taylor-SPH
- Multiscale dynamic fracture behavior of the carbon nanotube reinforced concrete under impact loading
- Multi-phase modelling of violent hydrodynamics using Smoothed Particle Hydrodynamics (SPH) on Graphics Processing Units (GPUs)
- Numerical Modeling of Concrete Using a Partially Associative Plasticity Model
- Transient Fokker–Planck–Kolmogorov equation solved with smoothed particle hydrodynamics method
- Meshless modeling framework for fiber reinforced concrete structures
- AN ADAPTIVE CONTINUUM/DISCRETE CRACK APPROACH FOR MESHFREE PARTICLE METHODS
- Investigation of ultra-high performance concrete slab and normal strength concrete slab under contact explosion
- Numerical modelling to reproduce fragmentation of a tungsten heavy alloy projectile impacting a ceramic tile: Adaptive solid mesh to the SPH technique and the cohesive law
- A direct fragmentation method with Weibull function distribution of sizes based on finite- and discrete element simulations
- Dynamic simulation of damage‐fracture transition in smoothed particles hydrodynamics shells
- Concrete fragmentation modeling using coupled finite element - meshfree formulations
- Computational Methods for Fracture in Brittle and Quasi-Brittle Solids: State-of-the-Art Review and Future Perspectives
- Impact simulation of different mode failure
- Smooth particle hydrodynamics: status and future potential
- Modelling dynamic failure of concrete with meshfree methods
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