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Airborne Wind Energy System for Off-grid and Mobile End-uses

Pubblicazioni

Development of a Toolchain for Aero-structural Design of Composite AWE Kites

Autori: Ashwin Candade
Pubblicato in: 8th Airborne Wind Energy Conference (AWEC 2019), 2019
Editore: Delft Technical University

Some modelling and control aspects of rotational starting and landing

Autori: Maximilian Ranneberg
Pubblicato in: 9th international Airborne Wind Energy Conference (AWEC 2021): Book of Abstracts, 2022
Editore: Delft University of Technology

Rotational Launch and Landing: Flight tests at EnerKite

Autori: Christian Gebhard
Pubblicato in: 9th international Airborne Wind Energy Conference (AWEC 2021): Book of Abstracts, 2022
Editore: Delft University of Technology

Aero-structural design tailoring of composite AWE wings

Autori: Ashwin Candade
Pubblicato in: Airborne Wind Energy Conference 2021, 2022, ISBN 978-94-6384-350-8
Editore: Delft University of Technology
DOI: 10.4233/uuid:696eb599-ab9a-4593-aedc-738eb14a90b3

Achieving ultralight, rigid, durable, low- cost composite AWE kites with efficient design and manufacturing

Autori: Florian Breipohl
Pubblicato in: 9th international Airborne Wind Energy Conference (AWEC 2021): Book of Abstracts, 2022
Editore: Delft University of Technology

Concepts for Obstruction Marking and Demand-Oriented Obstruction Avoidance to Ensure a Safe Operation of AWE Systems

Autori: Nicole Allgaier
Pubblicato in: 9th international Airborne Wind Energy Conference (AWEC 2021): Book of Abstracts, 2022
Editore: Delft University of Technology

Charaktersisierung der EIgenbewegung einer Flugwindkraftanlage im Rotationsstart anhand einer Lienarisierung

Autori: Felix Gerhard
Pubblicato in: 2021
Editore: Technische Universtität Dresden

Theoretische Ausarbeitung verschiedener Konzepte zur Hinderniskenntlichmachung von EnerKítes und Vergleich mehrerer Varianten für einen sicheren Tag- und Nachtbetrieb in Deutschland

Autori: Nicole Allgaier
Pubblicato in: 2021
Editore: Beuth Hochschule für Technik

Structural analysis and optimization of a tethered swept wing for airborne wind energy generation

Autori: Maximilian Ranneberg, Ashwin Candade, Roland Schmehl
Pubblicato in: AWESCO - Airborne Wind Energy System Modelling, Control and Optimisation, Numero 10991824, 2020, ISSN 1099-1824
Editore: John Wiley & Sons Ltd
DOI: 10.1002/we.2469

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