Abstract While semi‐analytical boundary handling techniques have proven effective for modeling particle‐based fluid‐solid interactions, they can become unstable when applied to mesh boundaries undergoing dynamic motion or featuring complex, sharp geometries.
Junyuan Liu +5 more
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Investigated mutations in transthyretin (TTR) disrupt the F87‐centered hydrophobic core that stabilizes its tetrameric structure. The mild I107V mutation weakens inter‐chain packing, while H88R fully abolishes tetramer formation, yielding a monomeric, aggregation‐prone form. Structural, biophysical, and computational analyses reveal that both mutations
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New Leading-Edge Reinforcement Design of Aircraft Wing to Withstand Bird Collision. [PDF]
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In silico analysis of the invasion mechanics and invasiveness of the Plasmodium falciparum merozoite. [PDF]
Msosa C, Abdalrahman T, Franz T.
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Meshless numerical simulation on Frost cracking of rock masses containing random fissures under water-ice phase change. [PDF]
Zhu W, Yang X, Liu B, Han X, Yu S.
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Hydrodynamic response of an Antarctic glacial bay to cross-bay winds and its potential impact on primary production. [PDF]
Osińska M, Herman A.
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Numerical Prediction on the Impact Resistance of UHMWPE Flexible Film Against Hypervelocity Particles. [PDF]
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Wear Resistance Enhancement of Rotary Tillage Blades Through Structural Optimization and Surface Strengthening. [PDF]
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Incompressible smoothed particle hydrodynamics
Journal of Computational Physics, 2007zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Marco Ellero, Mar Serrano, Pep Español
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AN OVERVIEW ON SMOOTHED PARTICLE HYDRODYNAMICS
International Journal of Computational Methods, 2008This paper presents an overview on smoothed particle hydrodynamics (SPH), which is a meshfree, particle method of Lagrangian nature. In theory, the interpolation and approximations of the SPH method and the corresponding numerical errors are analyzed. The inherent particle inconsistency has been discussed in detail.
Liu, M. B., Liu, G. R., Zong, Z.
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