Search Results - "Tewari, S. V"

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  1. 1

    Development of a triggering arrangement for the KALI-30GW MARX generator by Mitra, S., Kolge, T. S., Agarwal, Ritu, Saroj, P. C., Patel, Ankur, Senthil, K., Sharma, Vishnu, Tewari, S. V., Sharma, Archana, Mittal, K. C.

    Published in Journal of the Korean Physical Society (01-02-2015)
    “…This paper reports the design methodology and implementation experiments for a solid-state-based triggering arrangement for the MARX generator of the KALI-30GW…”
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    Journal Article
  2. 2

    Particle-in-Cell Simulations of Discharge Along Gas-Solid Interface by Tewari, S. V., Roy, A., Sharma, A., Mittal, K. C., Chakravarthy, D. P., Saxena, A., Singh, N. M.

    Published in IEEE transactions on plasma science (01-03-2013)
    “…A new computational model to understand the mechanism of discharges along the gas/solid interface at high voltage and high pressure is made based on the models…”
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    Journal Article
  3. 3

    3D particle in cell simulations of spark gap discharge using Argon gas as dielectric medium by Reddy, C. S., Tewari, S. V., Sharma, Archana, Mittal, K. C., Umbarkar, Sachin B.

    “…Summary form only given. This paper presents PIC simulations of spark gap discharge, filled with Argon gas at atmospheric pressure. The rogowsky profile…”
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    Conference Proceeding
  4. 4

    Optimisation of sequential triggering delay in a coaxial fast erecting Marx generator by Reddy, C. S., Mitra, S., Tewari, S. V., Sharma, Archana, Mittal, K. C., Umbarkar, Sachin B.

    “…Summary form only given. This paper analyses the phenomena of wave erection in a coaxially arranged fast erecting MARX generator for finding the importance of…”
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    Conference Proceeding
  5. 5

    Development and Analysis of PFN Based Compact Marx Generator Using Finite Integration Technique for an Antenna Load by Tewari, Somesh Vinayak, Umbarkar, Sachin Bhagwat, Agarwal, Ritu, Saroj, P. C., Sharma, Archana, Mittal, Kailash Chandra, Mangalvedekar, Harivittal A.

    Published in IEEE transactions on plasma science (01-10-2013)
    “…This paper presents the design and development of a compact Marx generator based on pulse forming network (PFN) along with a peaking capacitor rated at 300 kV…”
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    Journal Article
  6. 6

    Effect of Spacer Surface and Geometry on Surface Discharge in Gas Using PIC Simulation by Tewari, Somesh Vinayak, Roy, Amitava, Sharma, Archana, Mittal, Kailash Chandra

    Published in IEEE transactions on plasma science (01-02-2015)
    “…The presence of spacer in a spark-gap system leads to a reduction in breakdown voltage. This paper studies the effect of spacer surface profile and surface…”
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    Journal Article
  7. 7

    TNFR2 gene polymorphism in coronary artery disease by Sankar, V H, Girisha, K M, Gilmour, A, Singh, V P, Sinha, N, Tewari, S, Ramesh, V, Mastana, S, Agrawal, Suraksha

    Published in Indian journal of medical sciences (01-03-2005)
    “…Recently atherosclerosis and coronary artery disease (CAD) are considered to be inflammatory diseases. The genetic polymorphism in inflammatory markers has…”
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    Journal Article
  8. 8

    3D particle in cell simulations of spark gap discharge using Argon gas as dielectric medium by Redd, C. S., Tewari, S. V., Sharma, Archana, Mittal, K. C., Umbarkar, Sachin B.

    “…This paper presents PIC simulations of spark gap discharge, filled with Argon gas at atmospheric pressure. The rogowsky profile electrodes having an…”
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    Conference Proceeding
  9. 9

    Effect on electron drift velocity and ionization coefficient along a gas-solid interface by Tewari, S. V., Reddy, C. S., Sharma, A., Mittal, K. C.

    “…This paper presents the theoretical analysis of the variations in the drift velocity and ionization coefficient of electrons in the presence of an insulator in…”
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    Conference Proceeding
  10. 10

    Computational model of discharge across a gas/solid interface at high pressure by Tewari, S. V., Roy, A., Sharma, Archana, Mittal, K. C., Chakravarthy, D. P., Saxena, A., Singh, N. M.

    “…A numerical model employing FDTD based particle-in-cell code (PIC) is used to study the discharge mechanism across a gas /solid interface. The simulation is…”
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    Conference Proceeding