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Shock Wave Structure in a Fully Ionized Gas Based on Multi-component Fluid Theory

Shock Wave Structure in a Fully Ionized Gas Based on Multi-component Fluid Theory PDF Author: Huon Li
Publisher:
ISBN:
Category : Differential equations
Languages : en
Pages : 132

Book Description
The multi-component continuous approach for the investigation of the gasdynamics of a plasma is presented. More information about the flow properties of a plasma can be obtained than from the classical magnetohydrodynamic approach. Also, the resulting equations appear to be more easily solved than the Blotzmann equation of classical kinetic theory. The basic macroscopic conservation equations for a non-reacting multi-component plasma are presented. The fluid properties of each component are referred to the mean velocity of that component. Therefore, no limitations are placed on the magnitude of the diffusion velocities. The effects of electric and magnetic fields are included. The equations for a two-component mixture are used to study the structure of a shock wave in a fully-ionized hydrogen gas. It is assumed that the momentum exchange and energy exchange between the ions and electrons are important because of the strong Coulomb forces present. (Author).

Shock Wave Structure in a Fully Ionized Gas Based on Multi-component Fluid Theory

Shock Wave Structure in a Fully Ionized Gas Based on Multi-component Fluid Theory PDF Author: Huon Li
Publisher:
ISBN:
Category : Differential equations
Languages : en
Pages : 132

Book Description
The multi-component continuous approach for the investigation of the gasdynamics of a plasma is presented. More information about the flow properties of a plasma can be obtained than from the classical magnetohydrodynamic approach. Also, the resulting equations appear to be more easily solved than the Blotzmann equation of classical kinetic theory. The basic macroscopic conservation equations for a non-reacting multi-component plasma are presented. The fluid properties of each component are referred to the mean velocity of that component. Therefore, no limitations are placed on the magnitude of the diffusion velocities. The effects of electric and magnetic fields are included. The equations for a two-component mixture are used to study the structure of a shock wave in a fully-ionized hydrogen gas. It is assumed that the momentum exchange and energy exchange between the ions and electrons are important because of the strong Coulomb forces present. (Author).

Shock-wave Structure in an Ionized Gas

Shock-wave Structure in an Ionized Gas PDF Author: Chien-Shiong Lu
Publisher:
ISBN:
Category : Shock waves
Languages : en
Pages : 408

Book Description


Shock Wave Structure in a Fully Ionized Gas Based on Multicomponent Continuum Equations

Shock Wave Structure in a Fully Ionized Gas Based on Multicomponent Continuum Equations PDF Author: Richard Detwiler Mathieu
Publisher:
ISBN:
Category : Plasma (Ionized gases)
Languages : en
Pages : 318

Book Description


Shock Wave Structure in Partially Ionized Gases

Shock Wave Structure in Partially Ionized Gases PDF Author: Maheshinder Singh Grewal
Publisher:
ISBN:
Category : Ionized gases
Languages : en
Pages : 160

Book Description
The structure of a shock wave in a partially ionized gas, which is in thermal on-equilibrium ahead of the shock wave, is investigated. A method is developed to solve this problem by separating it into two parts. First the structure of the shock wave associated with the mixture of ions and atoms, which are assumed to behave alike through the shock transition, is taken to be of the Mott-Smith form. Then the behavior of electrons as they pass through this ion-atom shock is analyzed. Using this method, calculations are made for the shock wave structure in partially ionized argon for Mach numbers equal to 8, 10 and 12, and for the values of the lectron-ion temperature ratio ahe d of the shock wave equal to 3, 5 and 8. (Author).

Shock-wave Structure Based in Ikenberry-Truesdell Approach to Kinetic Theory of Gases

Shock-wave Structure Based in Ikenberry-Truesdell Approach to Kinetic Theory of Gases PDF Author: Robert E. Street
Publisher:
ISBN:
Category : Integro-differential equations
Languages : en
Pages : 64

Book Description


Shock-wave Structure Based on Ikenberry-Truesdell Approach to Kinetic Theory of Gases

Shock-wave Structure Based on Ikenberry-Truesdell Approach to Kinetic Theory of Gases PDF Author: Robert E. Street
Publisher:
ISBN:
Category : Integro-differential equations
Languages : en
Pages : 68

Book Description


An Experimental Investigation of the Shock Structure in a Partially Ionized Gas

An Experimental Investigation of the Shock Structure in a Partially Ionized Gas PDF Author: Robert Henry Kirchhoff
Publisher:
ISBN:
Category :
Languages : en
Pages : 248

Book Description


Non-Ideal Gas Effects on Shock Waves in Weakly Ionized Gases

Non-Ideal Gas Effects on Shock Waves in Weakly Ionized Gases PDF Author: Robert Rubinstein
Publisher:
ISBN:
Category :
Languages : en
Pages : 14

Book Description
A shock wave in a weakly ionized gas can be preceeded by a charge separation region if the Debye length is larger than the shock width. It has been proposed that electrostatic contributions to pressure in the charge separation region can increase the sound speed ahead of the shock well above the sound speed in a neutral gas at the same temperature and therefore increase the shock propagation speed. This proposal is investigated numerically and theoretically. It is concluded that although the ion gas becomes strongly non-ideal in the charge separation region, there is no appreciable effect on the neutral shock.

An Experimental Study of the Shock Structure in a Partially Ionized Gas

An Experimental Study of the Shock Structure in a Partially Ionized Gas PDF Author: Robert H. Kirchhoff
Publisher:
ISBN:
Category : Ionized gases
Languages : en
Pages : 123

Book Description
Shock structure experiments were carried out in a radio frequency heated, steady state, low density, partially ionized argon plasma jet. The primary diagnostic tool was the aligned cylindrical free molecule Langmuir probe used to probe a normal shock wave. Spatial resolution was 13% of the heavy particle shock thickness, thus details of electron temperature, ion number density, and plasma potential are available through the shock. The electron temperature rise was observed to precede the heavy particle shock. The plasma potential converted from floating potential according to the theory of Laframboise was in substantial agreement with changes in plasma potential obtained from a numerical quadrature of the generalized Ohm's Law assuming zero current. A quantitative explanation of the dark space observed to precede partially ionized gas shocks is provided by comparing the collisional-radiative recombination rate calculated with observed electron temperature and number density to the luminosity of the flow. The results of integrating the electron energy equation including the effect of recombination energy transfer was compared to the data to show that the fraction of ionization energy given to the electron gas was not constant through the shock. (Author).

Physics of Shock Waves and High–Temperature Hydrodynamic Phenomena

Physics of Shock Waves and High–Temperature Hydrodynamic Phenomena PDF Author: Wallace Hayes
Publisher: Elsevier
ISBN: 0323147852
Category : Science
Languages : en
Pages : 479

Book Description
Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena, Volume II presents interpretations of the physical basis of shockwaves and high-temperature hydrodynamic phenomena and gives practical guidance to those who work with these subjects in science and modern technology. This volume contains chapters discussing such topics as the shockwave structure in gases; physical and chemical kinetics in hydrodynamic processes; the radiative phenomena in shock waves and in strong explosions in the air; thermal waves and shockwaves in solids; and self-similar processes in gasdynamics. Physicists, engineers, researchers, and professors and students in the field of the physical sciences will find the book very educational.