IEEE Transactions on Plasma Science · 1993 · 23 citations · 5 references
EngineeringFluid MechanicsPlasma PhysicsPlasma MedicineFluid PropertiesPlasma SimulationPlasma TheoryCapillarity PhenomenonPlasma ComputationTransport PhenomenaPlasma ConfinementNonthermal PlasmaConsistent TreatmentPlasma DiagnosticsCapillary NetworkSelf-consistent Boundary ConditionsPolyethylene CapillariesSelf-consistent SolutionGas Discharge PlasmaPlasma ApplicationCritical Plasma
A self-consistent solution of generalized, quasi-one-dimensional nonideal fluid equations describing the steady-state critical plasma flows in high pressure capillary discharges is presented. All three equations used (continuity, momentum and energy) include (ablative effects). No limitation to the case of ideal equation of state or to the spatial uniformity of the ionization degree is imposed. A numerical algorithm enabling the determination of self-consistent boundary conditions required for the integration of the differential equations is used. Illustrative result for typical physical parameters, namely, electrical current and radius and length of the capillary, are presented for polyethylene capillaries. The effects of changes in the geometrical characteristics of the capillary as well as in the electrical and radiative characteristics of the discharge on the plasma parameters are also considered.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
5
C. B. Ruchti, L. Niemeyer · IEEE Transactions on Plasma Science · 1986 · 223 citations
Engineering, Mass Ablation Rate, Minimally Invasive Procedure +9