A Strong Form Meshfree Collocation Method: Engineering Applications Including Frictional Contact
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Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-030-87312-7_25
Reference11 articles.
1. Kim, D. W., & Kim, Y. S. (2003). Point collocation methods using the fast moving least square reproducing kernel approximation. International Journal for Numerical Methods in Engineering, 56, 1445–1464.
2. Yoon, Y. C., & Song, J. H. (2014). Extended particle difference method for weak and strong discontinuity problems: Part I. Derivation of the extended particle derivative approximation for the representation of weak and strong discontinuities. Computational Mechanics, 53, 1087–1103.
3. Yoon, Y. C., & Song, J. H. (2014). Extended particle difference method for weak and strong discontinuity problems: Part II. Formulations and applications for various interfacial singularity problems. Computational Mechanics, 53, 1105–1128.
4. Yoon, Y. C., & Song, J. H. (2014). Extended particle difference method for moving boundary problems. Computational Mechanics, 54, 723–743.
5. Almasi, A., Kim, T. Y., Laursen, T. A., & Song, J. H. (2019). A strong form meshfree collocation method for frictional contact on a rigid obstacle. Computer Methods in Applied Mechanics and Engineering, 357, 112597.
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