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Blast Effects = Physical Properties ...
~
Sochet, Isabelle.
Blast Effects = Physical Properties of Shock Waves /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Blast Effects/ edited by Isabelle Sochet.
Reminder of title:
Physical Properties of Shock Waves /
other author:
Sochet, Isabelle.
Description:
X, 197 p. 91 illus., 23 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Heat engineering. -
Online resource:
https://doi.org/10.1007/978-3-319-70831-7
ISBN:
9783319708317
Blast Effects = Physical Properties of Shock Waves /
Blast Effects
Physical Properties of Shock Waves /[electronic resource] :edited by Isabelle Sochet. - 1st ed. 2018. - X, 197 p. 91 illus., 23 illus. in color.online resource. - Shock Wave and High Pressure Phenomena,2197-9529. - Shock Wave and High Pressure Phenomena,.
Preface -- Introduction -- The Rankine-Hugoniot Equations: Their Extensions and Inversions Related to Blast Waves -- The Friedlander Equations -- Shock Wave Overpressure Measurement: Comparison Between Two Piezoelectric Sensor Materials -- Exploding Wires -- Blast Wave Experiments by Means of a Gaseous Charge -- High Explosive -- TNT Equivalency -- Small Scale Blast Wave Experiments by Means of an Exploding Wire -- Appendix -- Further Reading -- Index.
This book compiles a variety of experimental data on blast waves. The book begins with an introductory chapter and proceeds to the topic of blast wave phenomenology, with a discussion Rankine-Hugoniot equations and the Friedlander equation, used to describe the pressure-time history of a blast wave. Additional topics include arrival time measurement, the initiation of detonation by exploding wires, a discussion of TNT equivalency, and small scale experiments. Gaseous and high explosive detonations are covered as well. The topics and experiments covered were chosen based on the comparison of used scale sizes, from small to large. Each characteristic parameter of blast waves is analyzed and expressed versus scaled distance in terms of energy and mass. Finally, the appendix compiles a number of polynomial laws that will prove indispensable for engineers and researchers.
ISBN: 9783319708317
Standard No.: 10.1007/978-3-319-70831-7doiSubjects--Topical Terms:
681953
Heat engineering.
LC Class. No.: QC138-168.86
Dewey Class. No.: 532
Blast Effects = Physical Properties of Shock Waves /
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Preface -- Introduction -- The Rankine-Hugoniot Equations: Their Extensions and Inversions Related to Blast Waves -- The Friedlander Equations -- Shock Wave Overpressure Measurement: Comparison Between Two Piezoelectric Sensor Materials -- Exploding Wires -- Blast Wave Experiments by Means of a Gaseous Charge -- High Explosive -- TNT Equivalency -- Small Scale Blast Wave Experiments by Means of an Exploding Wire -- Appendix -- Further Reading -- Index.
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This book compiles a variety of experimental data on blast waves. The book begins with an introductory chapter and proceeds to the topic of blast wave phenomenology, with a discussion Rankine-Hugoniot equations and the Friedlander equation, used to describe the pressure-time history of a blast wave. Additional topics include arrival time measurement, the initiation of detonation by exploding wires, a discussion of TNT equivalency, and small scale experiments. Gaseous and high explosive detonations are covered as well. The topics and experiments covered were chosen based on the comparison of used scale sizes, from small to large. Each characteristic parameter of blast waves is analyzed and expressed versus scaled distance in terms of energy and mass. Finally, the appendix compiles a number of polynomial laws that will prove indispensable for engineers and researchers.
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