Numerical Methods and Experimental Means for the Integration of Future Propulsion Systems Numerical Methods and Experimental Means for the Integration of Future Propulsion Systems
Springer Aerospace Technology

Numerical Methods and Experimental Means for the Integration of Future Propulsion Systems

A Resumé of the Achievements Made within the CleanSky 2 XDC Demonstrator

    • 139,99 €
    • 139,99 €

Descrizione dell’editore

This book provides the latest achievements of numerical methods and experimental means developed and demonstrated by the DLR researchers for the CleanSky 2 LPA Cross Capability Demonstrator (XDC). These developments have been made in order to establish design processes and tools for the prediction, assessment, and measurement of the integration of future propulsion systems for large passenger aircrafts. The XDC thus provided high-fidelity CFD and CAA tools as well as further developed prediction tools for noise and aero-elastics and advanced testing means. For each of the methods a short introduction is given and their applicability is described using examples from the project helping to find the right method supporting future design and integration work.

GENERE
Professionali e tecnici
PUBBLICATO
2026
30 aprile
LINGUA
EN
Inglese
PAGINE
296
EDITORE
Springer Nature Switzerland
DATI DEL FORNITORE
Springer Science & Business Media LLC
DIMENSIONE
114,8
MB
AIM² Advanced Flight Testing Workshop AIM² Advanced Flight Testing Workshop
2013
Advanced In-Flight Measurement Techniques Advanced In-Flight Measurement Techniques
2013
Structural Health Monitoring Damage Detection Systems for Aerospace Structural Health Monitoring Damage Detection Systems for Aerospace
2021
Non-Destructive Inspection for Aircraft Materials Non-Destructive Inspection for Aircraft Materials
2026
Rarefied Gas Dynamics Rarefied Gas Dynamics
2026
Digital Twins for Aerospace Digital Twins for Aerospace
2026
Trends in Aerospace Engineering Trends in Aerospace Engineering
2025
Apollo-Class Targeting and Guidance for Lunar Powered Descent and Precision Landing Apollo-Class Targeting and Guidance for Lunar Powered Descent and Precision Landing
2025