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Edney Shock Interactions in High Enthalpy Rarefied Gas Flows

  • Elif Fatma Avcilar*
  • , Bayram Celik
  • *Bu çalışma için yazışmadan sorumlu yazar
  • Istanbul Technical University

Araştırma sonucu: Kitap/Rapor/Konferans Bildirisinde BölümKonferans katkısıbilirkişi

Özet

This study aims to computationally model and characterize Edney Type-IV shock–shock interactions using an open-source Navier–Stokes solver within the OpenFOAM framework. Previous numerical investigations have mainly examined such interactions at high Mach numbers under low-enthalpy, rarefied conditions. While previous studies have provided valuable insights into shock interactions under rarefied conditions, their applicability to high-enthalpy regimes with strong thermochemical activity remains limited in the slip-flow regime. The present work addresses this gap by introducing high-enthalpy conditions to enable the modeling of thermochemical nonequilibrium effects in shock interaction behavior within the slip-flow regime with CFD. To do that, two different datasets have been run. The first dataset includes low-enthalpy conditions as a validation step. The simulations are validated against experimental results from the ONERA R5Ch wind tunnel. Secondly, high-enthalpy effects are incorporated to capture the coupled influence of rarefied gas dynamics and thermochemical nonequilibrium by increasing the stagnation enthalpy of the flow. Results show that molecular dissociation and exchange reaction patterns align closely with vibrational temperature distributions. This indicates that energy transfer into vibrational modes plays a critical role in driving reactions under rarefied, high-speed conditions, highlighting the importance of thermochemical nonequilibrium modeling in hypersonic flow simulations.

Orijinal dilİngilizce
Ana bilgisayar yayını başlığıAdvances in Computational Heat and Mass Transfer II - Proceedings of the 15th International Conference on Computational Heat and Mass Transfer, ICCHMT 2025
EditörlerBarbaros Cetin, A. Alperen Günay, Zafer Dursunkaya, Arif Cem Gözükara
YayınlayanSpringer Science and Business Media Deutschland GmbH
Sayfalar24-34
Sayfa sayısı11
ISBN (Basılı)9783032161345
DOI'lar
Yayın durumuYayınlandı - 2026
Etkinlik15th International Conference on Computational Heat and Mass Transfer, ICCHMT 2025 - Antalya, Türkiye
Süre: 19 May 202522 May 2025

Yayın serisi

AdıLecture Notes in Mechanical Engineering
ISSN (Basılı)2195-4356
ISSN (Elektronik)2195-4364

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???event.eventtypes.event.conference???15th International Conference on Computational Heat and Mass Transfer, ICCHMT 2025
Ülke/BölgeTürkiye
ŞehirAntalya
Periyot19/05/2522/05/25

Bibliyografik not

Publisher Copyright:
© The Author(s), under exclusive license to Springer Nature Switzerland AG 2026.

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