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Scaling laws for spherical pinch experiments

Academic Article
Publication Date:
1991
abstract:
In spherical pinch (SP) experiments, the plasma heated at the center of a cell to reach ignition temperature is confined by imploding shock waves for a time long enough to satisfy the Lawson criterion for plasma fusion. In earlier theoretical studies, the expansion of the central plasma either is neglected or is assumed to be radially uniform. In the present paper, the energy is considered to be deposited instantaneously at the center of the cell and the nonlinear heat conduction equation is solved to study the temporal evolution of the central plasma. Incorporating the ignition condition for the average temperature of the expanding fireball, and its confinement by imploding convergent shock waves, which may be fired from the periphery of the cell with some time delay, the scaling laws for satisfying the Lawson criterion are investigated in detail. The relevant calculations indicate that the cumulative effects of the convergent shock waves in the vicinity of the center of the cell play an important role in these scaling laws.
Iris type:
01.01 Articolo in rivista
Keywords:
Nuclear Energy - Fusion Reactions; Plasmas - Shock Waves; Imploding Shock Waves; Lawson Criterion Scaling Laws; Spherical Pinch (SP) Scaling Laws; Inertial Confinement Fusion
List of contributors:
Singh, DHARM PAL; Vaselli, Moreno; Palleschi, Vincenzo
Authors of the University:
PALLESCHI VINCENZO
Handle:
https://iris.cnr.it/handle/20.500.14243/189634
Published in:
LASER AND PARTICLE BEAMS
Journal
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