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Airborne Wind Energy

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Cover of 'Airborne Wind Energy'

Table of Contents

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    Book Overview
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    Chapter 1 Airborne Wind Energy: Basic Concepts and Physical Foundations
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    Chapter 2 Traction Power Generation with Tethered Wings
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    Chapter 3 Pumping Cycle Kite Power
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    Chapter 4 Efficiency of Traction Power Conversion Based on Crosswind Motion
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    Chapter 5 An Introduction to Meteorology for Airborne Wind Energy
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    Chapter 6 Kites: Pioneers of Atmospheric Research
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    Chapter 7 Financing Strategies for Airborne Wind Energy
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    Chapter 8 Theory and Experimental Validation of a Simple Comprehensible Model of Tethered Kite Dynamics Used for Controller Design
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    Chapter 9 On Modeling, Filtering and Automatic Control of Flexible Tethered Wings for Airborne Wind Energy
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    Chapter 10 Modeling of Airborne Wind Energy Systems in Natural Coordinates
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    Chapter 11 Numerical Trajectory Optimization for Airborne Wind Energy Systems Described by High Fidelity Aircraft Models
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    Chapter 12 Model Predictive Control of Rigid-Airfoil Airborne Wind Energy Systems
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    Chapter 13 Airborne Wind Energy Conversion Systems with Ultra High Speed Mechanical Power Transfer
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    Chapter 14 Model-Based Efficiency Analysis of Wind Power Conversion by a Pumping Kite Power System
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    Chapter 15 Economics of Pumping Kite Generators
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    Chapter 16 Aeroelastic Simulation of Flexible Membrane Wings based on Multibody System Dynamics
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    Chapter 17 Nonlinear Aeroelasticity, Flight Dynamics and Control of a Flexible Membrane Traction Kite
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    Chapter 18 Simulation Based Wing Design for Kite Power
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    Chapter 19 Estimation of the Lift-to-Drag Ratio Using the Lifting Line Method: Application to a Leading Edge Inflatable Kite
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    Chapter 20 Application of an Automated Kite System for Ship Propulsion and Power Generation
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    Chapter 21 Design and Testing of a 60 kW Yo-Yo Airborne Wind Energy Generator
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    Chapter 22 Modeling and Testing of a Kite-Powered Water Pump
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    Chapter 23 Design and Experimental Characterization of a Pumping Kite Power System
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    Chapter 24 Development of a Three-Line Ground-Actuated Airborne Wind Energy Converter
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    Chapter 25 Combining Kites and Rail Technology into a Traction-Based Airborne Wind Energy Plant
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    Chapter 26 Description and Preliminary Test Results of a Six Degrees of Freedom Rigid Wing Pumping System
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    Chapter 27 Airborne Wind Energy
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    Chapter 28 Analysis and Flight Test Validation of High Performance AirborneWind Turbines
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    Chapter 29 High Altitude Wind Energy from a Hybrid Lighter-than-Air Platform Using the Magnus Effect
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    Chapter 30 Lighter-Than-Air Wind Energy Systems
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    Chapter 31 Ram-air Wing Design Considerations for Airborne Wind Energy
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    Chapter 32 Conceptual Design of Textile Kites Considering Overall System Performance
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    Chapter 33 Airborne Wind Energy Tethers with High-Modulus Polyethylene Fibers
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    Chapter 34 Airborne Wind Energy
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    Chapter 35 Software System Architecture for Control of Tethered Kites
Overall attention for this book and its chapters
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Title
Airborne Wind Energy
Published by
Springer Berlin Heidelberg, January 2013
DOI 10.1007/978-3-642-39965-7
ISBNs
978-3-64-239964-0, 978-3-64-239965-7
Authors

Uwe Ahrens, Moritz Diehl, Roland Schmehl

Editors

Uwe Ahrens, Moritz Diehl, Roland Schmehl

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X Demographics

The data shown below were collected from the profiles of 2 X users who shared this research output. Click here to find out more about how the information was compiled.
Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 293 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Netherlands 2 <1%
United Kingdom 1 <1%
Belgium 1 <1%
Spain 1 <1%
United States 1 <1%
Unknown 287 98%

Demographic breakdown

Readers by professional status Count As %
Student > Master 65 22%
Student > Ph. D. Student 59 20%
Student > Bachelor 43 15%
Researcher 20 7%
Student > Doctoral Student 9 3%
Other 29 10%
Unknown 68 23%
Readers by discipline Count As %
Engineering 158 54%
Energy 21 7%
Computer Science 5 2%
Earth and Planetary Sciences 4 1%
Social Sciences 4 1%
Other 23 8%
Unknown 78 27%