[1] Jarasjarungkiat A., Wüchner R., Bletzinger K.-U., “A wrinkling model based on material modification for isotropic and orthotropic membranes”, Computer Methods in Applied Mechanics and Engineering, 2008; 197: 773-788.
[2] Jarasjarungkiat A., Wüchner R., Bletzinger K.-U., “Efficient sub-grid scale modeling of membrane wrinkling by a projection method”, Computer Methods in Applied Mechanics and Engineering, 2009; 198 (2009) 1097–1116 doi:10.1016/j.cma.2008.11.014
[3] Jarasjarungkiat A., Wüchner R., Bletzinger K.-U., “Consistent sub-grid scale enrichment with plasticity analogy approach for finite element simulation of wrinkled membranes”, Computer Methods in Applied Mechanics and Engineering (submitted).
[4] Jarasjarungkiat A., et. al., “Design concepts and development of the self floating boat landing” (in Thai), Princess of Narathiwat University Journal, 2016; year 8 vol 1, 53-61.
[5] Jintanamaneerat P., and Jarasjarungkiat A., “Risk study of Modular Assembly Process: A Case Study of Modular Assembly Yard, Chonburi, Thailand ”, Safety and Health at work (submitted).
[1] Jarasjarungkiat A., Wüchner R., and Bletzinger K.-U., “A wrinkling model based on material modification for membrane structures”, Proceedings of the 1st GACM Colloquium, Ruhr University Bochum, Germany, October 5-7, 2005, p 85.
[2] Jarasjarungkiat A., Wüchner R., and Bletzinger K.-U., “The coupling of enclosed gas with inflatable membranes”, Coupled Problems 2007, Santa Eulalia, Ibiza, Spain, May 21-23, 2007, p 557-560.
[3] Jarasjarungkiat A., Wüchner R., and Bletzinger K.-U., “An introduction of plasticity analogy for wrinkled membranes”, Structural Membranes 2007, Barcelona, Spain, September 17-19, 2007, p 314-317.
[4] Jarasjarungkiat A., Wüchner R., and Bletzinger K.-U., “General concepts of Elastoplasticity adopted wrinkling model”, Proceedings of the 2nd GACM Colloquium, Technische Universität München, München, Germany, October 10-12, 2007; p 75.
[5] Bletzinger K.-U., Jarasjarungkiat A., and Wüchner R., “Wrinkling as Multiscale Phenomenon in numerical analysis of membranes”, Multi-scale Computational Methods for Solids and Fluids, A. Ibrahimbegovic, F. Dias, H. Matthies, P. Wriggers (eds.) Cachan, France, November 28–30, 2007; p 30-36.
[6] Jarasjarungkiat A., Wüchner R., and Bletzinger K.-U., “Dynamic analysis of inflatable membranes coupled with enclosed fluid”, 8th.World Congress on Computational Mechanics (WCCM8) and the 5th. European Congress on Computational Methods in Applied Sciences and Engineering (ECCOMAS 2008), Lido Island in Venice , Italy, 30 June - 4 July 2008; CDROM.
[7] Jarasjarungkiat A., Wüchner R., and Bletzinger K.-U., “Mortar-Based Contact Formulation with Dual Basis Functions for Inflatable Membranes”, 1st International Conference on Computational Contact Mechanics (ICCCM09), Lecce, Italy, September 16-18, 2009; p53-54.
[8] Jarasjarungkiat A., Wüchner R., and Bletzinger K.-U., “Aspects of nonlinear analysis for an inflatable membrane coupled with enclosed fluids”, Structural Membranes 2009, Stuttgart, Germany, October 7-9, 2009: CD-ROM.
[9] Jarasjarungkiat A., Wüchner R., and Bletzinger K.-U., “A wrinkling model based on material modification for isotropic and orthotropic membranes”, Proceedings of the 12nd National Conference on Civil Engineering(NCCE12), Phitsanulok, Thailand, May 2-4, 2007, Volume 7 (STR), p 370-376.
[10] Jarasjarungkiat A., “Elastoplasticity adopted wrinkling model”, Proceedings of the 13rd National Conference on Civil Engineering(NCCE13), Chonburi, Thailand, May 14-16, 2008.
[11] Jarasjarungkiat A., “Concept of follower forces for pneumatic membrane structures”, Proceedings of the 15th National Conference on Civil Engineering(NCCE15), Ubonratchathani, Thailand, May 12-14, 2010 (STR145) CDROM.
[12] Jarasjarungkiat A., “Concept of follower forces for pneumatic membranes”, Proceedings of the 2ndNational Conference on Thai Simulation and Modeling (TSIMMOD2010), Pattaya, Chonburi, Thailand, May 20-21, 2010, p 1-8.
[13] Thaigur G., Kamtong P., and Jarasjarungkiat A., “The demonstrative unit for inflatable dam with automatic control system”, Proceedings of the 16th National Conference on Civil Engineering(NCCE16), Chonburi, Thailand, May 18-20, 2011 (STR0089) CDROM.
[14] Jarasjarungkiat A., Pacheunjai C., Klompanya N., and Jaroensap S., “AN INNOVATIVE LIGHTWEIGHT AGGREGATE MATERIAL FOR FLOATING SHELTERS”, Proceedings of the 18th National Conference on Civil Engineering(NCCE18), Chiang Mai, Thailand, May 8-10, 2013 (MAT030).
[15] Jintanamaneerat P., Jarasjarungkiat A., and Wongwai N., “Risk Assessment using Fault Tree Analysis for Modular Assembly Process”, Proceedings of the 21st National Conference on Civil Engineering (NCCE21), Songkhla, Thailand, June 27-30, 2016 (CEM) CDROM.
[16] Lertrattanaporn P., and Jarasjarungkiat A., “A comparison study for deflection of a foam composite material with results from the finite element method”, Proceedings of the 22nd National Conference on Civil Engineering (NCCE22), Nakornrachasima, Thailand, July 18-20, 2017 (STR) CDROM.
[1] Jarasjarungkiat A., “Development of the self-floating boat landing” (in Thai), Mice magazine, Faculty of Engineering at Si Racha, Kasetsart University Sriracha Campuss , vol1, No.2 (2014) ; p18-21.