Search Results - "Tangri, Varun"

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    Recent Simulations of Nozzle Gas Flow and Gas-Puff Z-Pinch Implosions with Magnetic Fields in the Weizmann Z-Pinch by Tangri, Varun, Giuliani, John L., Dasgupta, Arati, Queller, Tal, Kroupp, Eyal, Maron, Yitzhak

    “…Till recently, measurements of the magnetic field in gas-puff z-pinch implosions were limited to low density and temperatures typically found at very early…”
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    Conference Proceeding
  3. 3

    Simulations of Recent Argon Gas-Puff Implosions on Z With Xe and Kr Dopants by Tangri, Varun, Giuliani, John L., Velikovich, Alexander L., Ouart, Nicholas, Dasgupta, Arati, Apruzese, John P., Harvey-Thompson, A. J., Jennings, C. A., Jones, Brent

    Published in IEEE transactions on plasma science (01-11-2018)
    “…An intriguing result is that a small fraction of Xe (0.8% by number in the center jet) can have a significant impact on the emitted K-shell radiation in an Ar…”
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    Journal Article
  4. 4

    Simulations of Gas-PUFF Z-Pinch Implosions with Axial and Azimuthal Magnetic Fields in the Weizmann Z-Pinch by Tangri, Varun, Giuliani, John L., Queller, Tal, Maron, Yitzhak, Rosenzweig, Guy

    “…Gas-puff implosions on the generators at the Weizmann Institute of Science (WIS) are unique for understanding the basic plasma dynamics in the high energy…”
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    Conference Proceeding
  5. 5

    A model for K-shell x-ray yield from magnetic implosions at Sandia's Z machine by Schwarz, Jens, Vesey, Roger A., Ampleford, David J., Schaeuble, Marc-Andre, Jones, Brent, Velikovich, Alexander L., Giuliani, John L., Tangri, Varun, Ouart, Nicholas D., Dasgupta, Arati

    “…A zero dimensional thin-shell implosion model with a coupled equivalent circuit for the description of an imploding nested wire array or gas puff is presented…”
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    Conference Proceeding
  6. 6

    Continuum self-organized-criticality model of turbulent heat transport in tokamaks by Tangri, Varun, Das, Amita, Kaw, Predhiman, Singh, Raghvendra

    Published in Physical review letters (11-07-2003)
    “…A simple generic one-dimensional continuum model of driven dissipative systems is proposed to explain self-organized bursty heat transport in tokamaks…”
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    Journal Article
  7. 7

    Computation of Growth Rates and Threshold of the Electromagnetic Electron Temperature Gradient Modes in Tokamaks by Tangri, Varun

    Published 29-01-2013
    “…In this manuscript, eigenvalues of the Electron Temperature Gradient (ETG) modes and Ion Temperature Gradient (ITG) modes are determined numerically using…”
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    Journal Article