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Dive into the research topics where Tanja Führer is active.

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Featured researches published by Tanja Führer.


Aircraft Engineering and Aerospace Technology | 2016

Automated model generation and sizing of aircraft structures

Tanja Führer; Christian Willberg; Sebastian Freund; Falk Heinecke

Purpose To obtain a good start configuration in the early design phase, simulation tools are used to create a large number of product designs and to evaluate their performance. To reduce the effort for the model generation, analysis and evaluation, a design environment for thin-walled lightweight structures (DELiS) with the focus on structural mechanics of aircrafts has been developed. Design/methodology/approach The core of DELiS is a parametric model generator, which creates models of thin-walled lightweight structures for the aircraft preliminary design process. It is based on the common parametric aircraft configuration schema (CPACS), which is an abstract aircraft namespace. DELiS facilitates interfaces to several commercial and non-commercial finite element solvers and sizing tools. Findings The key principles and the advantages of the DELiS process are illustrated. Also, a convergence study of the finite element model of the wing and the fuselage and the result on the mass after the sizing process are shown. Due to the high flexibility of model generation with different levels of detail and the interface to the exchange database CPACS, DELiS is well suited to study the structural behaviour of different aircraft configurations in a multi-disciplinary design process. Originality/value The abstract definition of the object-oriented model allows several dimensions of variability, such as different fidelity levels, for the resulting structural model. Wings and fuselages can be interpreted as finite beam models, to calculate the global dynamic behaviour of a structure, or as finite shell models.


Archive | 2016

Comparison of Breguet and ODE Evaluation of the Cruise Mission Segment in the Context of High-Fidelity Aircraft MDO

Caslav Ilic; Tanja Führer; Nagaraj Banavara; Mohammad Abu-Zurayk; Gunnar Einarsson; Martin Kruse; Jan Himisch; Doreen Seider; Richard-Gregor Becker

This report presents a multi-disciplinary optimization (MDO) process that minimizes the mission fuel burn of an aeroelastic long-range transport aircraft configuration, by modifying the wing planform, twist, and structural element thicknesses. Two optimizations are performed, one where the fuel burn is approximately evaluated through Breguet range equation, and the other where the ordinary differential equation (ODE) for the step-climb cruise is formally integrated. This is done in order to determine if the Breguet equation is still sufficient in face of high-fidelity aeroelastic simulations. The two optimized designs ended up having similar improvements, thus confirming the applicability of the Breguet equation, for the number of design parameters that were employed.


CEAS Aeronautical Journal | 2016

DLR Project Digital-X: towards virtual aircraft design and flight testing based on high-fidelity methods

Norbert Kroll; Mohammad Abu-Zurayk; Diliana Dimitrov; Thomas Franz; Tanja Führer; Thomas Gerhold; Stefan Görtz; Ralf Heinrich; Caslav Ilic; Jonas Jepsen; Jens Jägersküpper; Martin Kruse; Andreas Krumbein; Stefan Langer; Dishi Liu; René Liepelt; Lars Reimer; Markus Ritter; Axel Schwöppe; Julian Scherer; Frank Spiering; Reik Thormann; Vamshi Togiti; Daniel Vollmer; Jan-Hendrik Wendisch


Archive | 2014

DLR-Projekt Digital-XAuf dem Weg zur virtuellen Flugzeugentwicklung und Flugerprobung auf Basis höherwertiger Verfahren

Norbert Kroll; Mohammad Abu-Zurayk; Diliana Dimitrov; Thomas Franz; Tanja Führer; Thomas Gerhold; Stefan Görtz; Ralf Heinrich; Caslav Ilic; Jonas Jepsen; Jens Jägersküpper; Martin Kruse; Andreas Krumbein; Stefan Langer; Dishi Liu; René Liepelt; Lars Reimer; Markus Ritter; Axel Schwöppe; Julian Scherer; Frank Spiering; Reik Thormann; Vamshi Togiti; Daniel Vollmer; Jan-Hendrik Wendisch


Archive | 2016

Collaborative Multi-Level MDO Process Development and Application to Long-Range Transport Aircraft

Stefan Görtz; Caslav Ilic; Mohammad Abu-Zurayk; René Liepelt; Jonas Jepsen; Tanja Führer; Richard-Gregor Becker; Julian Scherer; Thiemo Kier; Martin Siggel


Archive | 2016

Automated Sizing Process of a complete Aircraft Structure for the Usage within a MDO Process

Andreas Schuster; Julian Scherer; Tanja Führer; Tobias Bach; Dieter Kohlgrüber


Archive | 2014

Entwicklung einer Softwareplattform für die Multidisziplinäre Optimierung eines Gesamtflugzeugs

Tanja Führer; Stefan Görtz; Mohammad Abu-Zurayk; Caslav Ilic; Stefan Keye; Nagaraj Banavara; Martin Kruse; Olaf Brodersen; René Liepelt; Richard-Gregor Becker; Tobias Bach; Jonas Jepsen; Pier Davide Ciampa; Dieter Kohlgrüber; Julian Scherer; Thiemo Kier; Martin Leitner; Martin Siggel


Thin-walled Structures | 2017

Stiffness degradation of composite skin fields due to strength and buckling onset

Tanja Führer


Archive | 2016

Development of a Software Platform for Multidisciplinary Optimization of Transport Aircraft

Stefan Görtz; Gunnar Einarsson; Martin Kruse; René Liepelt; Richard-Gregor Becker; Julian Scherer; Tanja Führer; Pier Davide Ciampa; Martin Siggel; Sascha Zur; Thiemo Kier


Archive | 2016

A cooperative approach to multi-level multi-disciplinary aircraft optimization

Caslav Ilic; Mohammad Abu-Zurayk; Martin Kruse; Stefan Keye; Tobias Wunderlich; Gunnar Einarsson; Tanja Führer; Andreas Schuster; Julian Scherer; René Liepelt; Martin Leitner; Jonas Jepsen; Pier Davide Ciampa; Richard-Gregor Becker; Doreen Seider; Sascha Zur; Martin Siggel; Tobias Stollenwerk

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Caslav Ilic

German Aerospace Center

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Martin Kruse

German Aerospace Center

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Jonas Jepsen

German Aerospace Center

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