An exhaustive analysis of shock admissibility and shock-induced phase transition in a van der Waals fluid is presented. The crucial role played by the unperturbed state (the state before the shock) is put into evidence, leading to a full understanding of some phenomena observable in real gases that cannot be accounted for in the framework of the ideal gas model. The study is carried out by means of the theory of hyperbolic systems and numerical calculations. The paper is divided into three parts; in this part the theory of hyperbolic systems pertinent to this analysis is presented, focusing on the RankineHugoniot conditions and on the selection rules for the shock admissibility

ADMISSIBLE SHOCK WAVES AND SHOCK-INDUCED PHASE TRANSITION IN A VAN DER WAALS FLUID (PART II - RANKINE-HUGONIOT CONDITIONS AND SHOCK ADMISSIBILITY)

RUGGERI, TOMMASO ANTONIO;MENTRELLI, ANDREA;
2010

Abstract

An exhaustive analysis of shock admissibility and shock-induced phase transition in a van der Waals fluid is presented. The crucial role played by the unperturbed state (the state before the shock) is put into evidence, leading to a full understanding of some phenomena observable in real gases that cannot be accounted for in the framework of the ideal gas model. The study is carried out by means of the theory of hyperbolic systems and numerical calculations. The paper is divided into three parts; in this part the theory of hyperbolic systems pertinent to this analysis is presented, focusing on the RankineHugoniot conditions and on the selection rules for the shock admissibility
2010
Proceedings WASCOM 2009 - 15th Conference on Waves and Stability in Continuous Media
279
288
Ruggeri T.; Mentrelli A.; Sugiyama M.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/92964
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