author_facet Higashino, Fumio
Higashino, Fumio
author Higashino, Fumio
spellingShingle Higashino, Fumio
Zeitschrift für Naturforschung A
An Analysis of Nonsimilar Problems on Spherical Blast Waves
Physical and Theoretical Chemistry
General Physics and Astronomy
Mathematical Physics
author_sort higashino, fumio
spelling Higashino, Fumio 1865-7109 0932-0784 Walter de Gruyter GmbH Physical and Theoretical Chemistry General Physics and Astronomy Mathematical Physics http://dx.doi.org/10.1515/zna-1976-0708 <jats:title>Abstract</jats:title> <jats:p> An approximate analytical method that is valid for the entire propagation regime of a blast wave is established for point explosions. The method is based on an application of the shock ex-pansion method to boundary conditions. The numerical calculations were carried out for spherical flows with constant adiabatic exponent. The results show that the value of the shock decay coefficient gives good agreement with the numerically exact solution by Goldstine and von Neumann. The profiles of the pressure, density, and particle velocity behind the shock were obtained. The solutions show the possible profiles as compared to other existing analyses.</jats:p> An Analysis of Nonsimilar Problems on Spherical Blast Waves Zeitschrift für Naturforschung A
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title An Analysis of Nonsimilar Problems on Spherical Blast Waves
title_unstemmed An Analysis of Nonsimilar Problems on Spherical Blast Waves
title_full An Analysis of Nonsimilar Problems on Spherical Blast Waves
title_fullStr An Analysis of Nonsimilar Problems on Spherical Blast Waves
title_full_unstemmed An Analysis of Nonsimilar Problems on Spherical Blast Waves
title_short An Analysis of Nonsimilar Problems on Spherical Blast Waves
title_sort an analysis of nonsimilar problems on spherical blast waves
topic Physical and Theoretical Chemistry
General Physics and Astronomy
Mathematical Physics
url http://dx.doi.org/10.1515/zna-1976-0708
publishDate 1976
physical 723-727
description <jats:title>Abstract</jats:title> <jats:p> An approximate analytical method that is valid for the entire propagation regime of a blast wave is established for point explosions. The method is based on an application of the shock ex-pansion method to boundary conditions. The numerical calculations were carried out for spherical flows with constant adiabatic exponent. The results show that the value of the shock decay coefficient gives good agreement with the numerically exact solution by Goldstine and von Neumann. The profiles of the pressure, density, and particle velocity behind the shock were obtained. The solutions show the possible profiles as compared to other existing analyses.</jats:p>
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author Higashino, Fumio
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container_title Zeitschrift für Naturforschung A
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description <jats:title>Abstract</jats:title> <jats:p> An approximate analytical method that is valid for the entire propagation regime of a blast wave is established for point explosions. The method is based on an application of the shock ex-pansion method to boundary conditions. The numerical calculations were carried out for spherical flows with constant adiabatic exponent. The results show that the value of the shock decay coefficient gives good agreement with the numerically exact solution by Goldstine and von Neumann. The profiles of the pressure, density, and particle velocity behind the shock were obtained. The solutions show the possible profiles as compared to other existing analyses.</jats:p>
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spelling Higashino, Fumio 1865-7109 0932-0784 Walter de Gruyter GmbH Physical and Theoretical Chemistry General Physics and Astronomy Mathematical Physics http://dx.doi.org/10.1515/zna-1976-0708 <jats:title>Abstract</jats:title> <jats:p> An approximate analytical method that is valid for the entire propagation regime of a blast wave is established for point explosions. The method is based on an application of the shock ex-pansion method to boundary conditions. The numerical calculations were carried out for spherical flows with constant adiabatic exponent. The results show that the value of the shock decay coefficient gives good agreement with the numerically exact solution by Goldstine and von Neumann. The profiles of the pressure, density, and particle velocity behind the shock were obtained. The solutions show the possible profiles as compared to other existing analyses.</jats:p> An Analysis of Nonsimilar Problems on Spherical Blast Waves Zeitschrift für Naturforschung A
spellingShingle Higashino, Fumio, Zeitschrift für Naturforschung A, An Analysis of Nonsimilar Problems on Spherical Blast Waves, Physical and Theoretical Chemistry, General Physics and Astronomy, Mathematical Physics
title An Analysis of Nonsimilar Problems on Spherical Blast Waves
title_full An Analysis of Nonsimilar Problems on Spherical Blast Waves
title_fullStr An Analysis of Nonsimilar Problems on Spherical Blast Waves
title_full_unstemmed An Analysis of Nonsimilar Problems on Spherical Blast Waves
title_short An Analysis of Nonsimilar Problems on Spherical Blast Waves
title_sort an analysis of nonsimilar problems on spherical blast waves
title_unstemmed An Analysis of Nonsimilar Problems on Spherical Blast Waves
topic Physical and Theoretical Chemistry, General Physics and Astronomy, Mathematical Physics
url http://dx.doi.org/10.1515/zna-1976-0708