Interaction of Shock Tube Generated Blast Wave with a Rectangular Object at Two Pressure Ratios: Numerical Simulations and Their Comparison

Author:

Kundu Abhishek,Thangadurai Murugan

Publisher

Springer Nature Singapore

Reference20 articles.

1. I. S. Sandhu, Ankush Sharma, M. Thangadurai, M. Kala, P. S. Alegaonkar, M. Singh, D. R. Saroha, Comparison of Blast Pressure Mitigation in Rubber Foam in a Blast Wave Generator and Field Test Setups. Combustion Explosion and Shock Waves 56(1), 2020, pp. 116–123.

2. I. S. Sandhu, M. Thangadurai, P. S. Alegaonkar, D. R. Saroha, Mitigation of Blast Induced Acceleration using open cell natural rubber and Synthetic Foam. Defence Science Journal 69(1), 2019, pp. 53–57.

3. T. Murugan, D. Das, Structure and Acoustic Characteristics of Supersonic Vortex Rings. FLUCOME 2007 (9th International Symposium on Fluid Control, Measurement and Visualization), September 16–19, 2007, Tallahassee, Florida, USA.

4. T. Murugan, S. De, C. L. Dora, D. Das, P. Prem Kumar, A study of the counter rotating vortex rings interacting with the primary vortex ring in shock tube generated flows. Fluid Dyn. Res. 45(2), 2013, pp. 025506.

5. T. Murugan, S. De, A. Kundu, I. P. S. Sandhu, D. R. Saroha, Interaction of a shock tube generated blast wave with solid obstacles. 11th International High Energy Materials Conference & Exhibits, November 23–25, 2017, Pune, India.

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