Pulsed power experiments in hydrodynamics and material properties
نویسندگان
چکیده
منابع مشابه
High-Order Multi-Material ALE Hydrodynamics
We present a new approach for multi-material Arbitrary Lagrangian-Eulerian (ALE) hydrodynamics simulations based on high-order finite elements posed on high-order curvilinear meshes. The method builds on and extends our previous work in the Lagrangian [1] and remap [2] phases of ALE, and depends critically on a functional perspective that enables sub-zonal physics and material modeling [3]. Cur...
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A high power pulsed magnetized arc discharge has been developed to allow the superimposition of a high power plasma impulse onto a DC plasma within a single plasma source. A capacitor bank (8400 μF) is parallel-coupled to the current regulated power supply. The current is transiently increased from its stationary value (200 A) up to 14.5 kA in 650 μs. The discharge power is thus raised from 18 ...
متن کاملA high power pulsed plasma system for material testing under simultaneous continuous and transient loads
A high power pulsed magnetized arc discharge has been developed to allow the superimposition of a high power plasma impulse onto a DC plasma within a single plasma source. A capacitor bank (8400 μF) is parallel-coupled to the current regulated power supply. The current is transiently increased from its stationary value (200 A) up to 14.5 kA in 650 μs. The discharge power is thus raised from 18 ...
متن کاملA high power pulsed plasma system for material testing under simultaneous continuous and transient loads
A high power pulsed magnetized arc discharge has been developed to allow the superimposition of a high power plasma impulse onto a DC plasma within a single plasma source. A capacitor bank (8400 μF) is parallel-coupled to the current regulated power supply. The current is transiently increased from its stationary value (200 A) up to 14.5 kA in 650 μs. The discharge power is thus raised from 18 ...
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ژورنال
عنوان ژورنال: IEEE Transactions on Plasma Science
سال: 2000
ISSN: 0093-3813
DOI: 10.1109/27.901234