Design and implementation of a test bench for an aerospike nozzle

Univ Europeenne - EAN : 9783330870093
Diego Garcia
Édition papier

EAN : 9783330870093

Paru le : 1 nov. 2018

49,90 € 47,30 €
Disponible
Pour connaître votre prix et commander, identifiez-vous
Notre engagement qualité
  • Benefits Livraison gratuite
    en France sans minimum
    de commande
  • Benefits Manquants maintenus
    en commande
    automatiquement
  • Benefits Un interlocuteur
    unique pour toutes
    vos commandes
  • Benefits Toutes les licences
    numériques du marché
    au tarif éditeur
  • Benefits Assistance téléphonique
    personalisée sur le
    numérique
  • Benefits Service client
    Du Lundi au vendredi
    de 9h à 18h
  • EAN13 : 9783330870093
  • Réf. fournisseur : 2967132
  • Editeur : Univ Europeenne
  • Date Parution : 1 nov. 2018
  • Disponibilite : Disponible
  • Barème de remise : NS
  • Nombre de pages : 108
  • Format : H:229 mm L:152 mm E:7 mm
  • Poids : 170gr
  • Interdit de retour : Retour interdit
  • Résumé : Numerous mechanics-related fields require a deep and complete understanding of compressible fluid flows which are usually taught in several university courses. The simplified approach and the underlying assumptions used during these lectures however make the theoretical results slightly differ from the real behavior of compressible flows. In order to confront this theory with real flows, two methods can be implemented. The first one is numerical simulation of the studied compressible flows. This first method is very time consuming, requires a lot of computing resources and still implies the use of numerical models to approximate reality. It is thus not very practical for teaching purposes. The second option is the use of a test bench that allows student to visualize, observe and measure the properties of real flows in different situations. This method is by far the best to give students a practical insight into the behavior of compressible flows. The objective of this thesis is to design and implement such a test bench, allowing the visualization of the air flow within and around an aerospike nozzle.
Haut de page
Copyright 2026 Cufay. Tous droits réservés.