Araştırma Makalesi

Experimental and Coupled Eulerian and Lagrangian Numerical Modeling of Ground Contact Explosions

Cilt: 4 Sayı: 3 20 Ekim 2025
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Experimental and Coupled Eulerian and Lagrangian Numerical Modeling of Ground Contact Explosions

Öz

The present work conducts an experimental and numerical analysis of crater formation resulting from contact surface explosions in soil, utilizing the Coupled Eulerian and Lagrangian (CEL) approach. The crater formation caused by the detonation of an explosive in soil, including shock and elastic-plastic wave propagation in soil, has been numerically simulated using the CEL method. An explosive equivalent to TNT was detonated in direct contact with the soil to examine crater shape, specifically diameter and depth. The numerical model was constructed to correspond with experimental conditions, and findings were compared. The JWL state equations were employed to delineate the properties of the explosive material. The mechanical characteristics of the explosive and soil materials were delineated utilizing the Mohr-Coulomb model, and the deformations acquired via the CEL approach were compared with experimental data. The ejecta generated in the soil due to the explosion, the dimensions of the crater, and the propagation of the shock wave significantly influence soil behavior. This study offers critical insights into soil behavior relevant to defense sector applications and incidents involving explosions, whether accidental or terrorist in cause.

Anahtar Kelimeler

Destekleyen Kurum

TÜBİTAK

Proje Numarası

219M392

Etik Beyan

Hazırlanan makalede herhangi bir kişi/kurumla çıkar çatışması bulunmamaktadır.

Kaynakça

  1. P.A. Persson, R. Holmberg, and J. Lee, Rock Blasting and Explosives Engineering. Boca Raton, FL, USA: CRC Press, 2018.
  2. J.W. Bull, and C.H. Woodford, “Camouflets and their effect on runway support,” Comput. Struct., vol. 69, no. 6, pp. 695–706, Dec. 1998.
  3. B. Luccioni, D. Ambrosini, G. Nurick, and I. Snyman, “Craters produced by underground explosions,” Comput. Struct., vol. 87, no. 21–22, pp. 1366–1373, 2009.
  4. C. Mougeotte, P. Carlucci, S. Recchia, and H. Ji, “Novel approach to conducting blast load analyses using Abaqus/Explicit-CEL,” in Proc. 2010 SIMULIA Customer Conf., 2010, pp. 1–15. [Online]. Available: http://www.simulia.com/download/scc-papers/Defense/novel-approach-conducting-blast-load-analyses-2010-F.pdf
  5. Z. Wang, H. Hao, and Y. Lu, “A three-phase soil model for simulating stress wave propagation due to blast loading,” Int. J. Numer. Anal. Methods Geomech., vol. 28, no. 1, pp. 33–56, Jan. 2004.
  6. X. Tong, and C. Y. Tuan, “Viscoplastic cap model for soils under high strain rate loading,” J. Geotech. Geoenviron. Eng., vol. 133, no. 2, pp. 206–214, Feb. 2007.
  7. J. An, C. Y. Tuan, B. A. Cheeseman, and G. A. Gazonas, “Simulation of soil behavior under blast loading,” Int. J. Geomech., vol. 11, no. 4, pp. 323–334, 2011.
  8. S. Savaş, and D. Bakir, “An investigation of the effects of the vehicle terror suicide attack in the urban area,” Eng. Fail. Anal., vol. 145, p. 107049, Mar. 2023.

Ayrıntılar

Birincil Dil

İngilizce

Konular

İnşaat Yapım Mühendisliği

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

20 Ekim 2025

Gönderilme Tarihi

7 Temmuz 2025

Kabul Tarihi

16 Eylül 2025

Yayımlandığı Sayı

Yıl 2025 Cilt: 4 Sayı: 3

Kaynak Göster

APA
Bakır, D. (2025). Experimental and Coupled Eulerian and Lagrangian Numerical Modeling of Ground Contact Explosions. Firat University Journal of Experimental and Computational Engineering, 4(3), 618-636. https://doi.org/10.62520/fujece.1736569
AMA
1.Bakır D. Experimental and Coupled Eulerian and Lagrangian Numerical Modeling of Ground Contact Explosions. Firat University Journal of Experimental and Computational Engineering. 2025;4(3):618-636. doi:10.62520/fujece.1736569
Chicago
Bakır, Dursun. 2025. “Experimental and Coupled Eulerian and Lagrangian Numerical Modeling of Ground Contact Explosions”. Firat University Journal of Experimental and Computational Engineering 4 (3): 618-36. https://doi.org/10.62520/fujece.1736569.
EndNote
Bakır D (01 Ekim 2025) Experimental and Coupled Eulerian and Lagrangian Numerical Modeling of Ground Contact Explosions. Firat University Journal of Experimental and Computational Engineering 4 3 618–636.
IEEE
[1]D. Bakır, “Experimental and Coupled Eulerian and Lagrangian Numerical Modeling of Ground Contact Explosions”, Firat University Journal of Experimental and Computational Engineering, c. 4, sy 3, ss. 618–636, Eki. 2025, doi: 10.62520/fujece.1736569.
ISNAD
Bakır, Dursun. “Experimental and Coupled Eulerian and Lagrangian Numerical Modeling of Ground Contact Explosions”. Firat University Journal of Experimental and Computational Engineering 4/3 (01 Ekim 2025): 618-636. https://doi.org/10.62520/fujece.1736569.
JAMA
1.Bakır D. Experimental and Coupled Eulerian and Lagrangian Numerical Modeling of Ground Contact Explosions. Firat University Journal of Experimental and Computational Engineering. 2025;4:618–636.
MLA
Bakır, Dursun. “Experimental and Coupled Eulerian and Lagrangian Numerical Modeling of Ground Contact Explosions”. Firat University Journal of Experimental and Computational Engineering, c. 4, sy 3, Ekim 2025, ss. 618-36, doi:10.62520/fujece.1736569.
Vancouver
1.Dursun Bakır. Experimental and Coupled Eulerian and Lagrangian Numerical Modeling of Ground Contact Explosions. Firat University Journal of Experimental and Computational Engineering. 01 Ekim 2025;4(3):618-36. doi:10.62520/fujece.1736569