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Forum Index : Windmills : OpenAFPM: Wind turbine generator design

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klapeto
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Joined: 25/03/2013
Location: Greece
Posts: 5
Posted: 09:27am 19 Mar 2018
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OpenAFPM: An open source software tool for modelling and designing axial flux permanent magnet generators in wind electric systems

The OpenAFPM modeling tools can be used for designing Axial Flux Permanent Magnet (AFPM) generators for wind electric systems with the use of the open source finite element analysis software ‘Finite Element Method Magnetics’ (FEMM). This series of design tools have been developed by the Rural Electrification Research Group (RurERG), which is part of the Smart RUE (Smart grids Research Unit of the Electrical and Computer Engineering School) of the National Technical University of Athens (NTUA), in order to assist designers and practitioners involved with small scale wind electric systems.

The OpenAFPM tools series consists of three design tools named MagnAFPM, UserAFPM and OptiAFPM. The tool MagnAFPM can be used for designing a generator for a specific set of rotor blades and a specific set of permanent magnet dimensions. The tool UserAFPM can be used to validate the performance of a specific generator geometry by performing a finite element analysis using FEMM. The tool OptiAFPM uses the particle swarm optimization (PSO) to optimize the dimensions of the permanent magnets used in the generator design for a specific set of rotor blades, while minimizing the generator’s efficiency, cost and/or mass.

The creation of the online user interface of the OpenAFPM modeling tools has been supported by WISIONS as part of the project ‘Online Design Tools for Locally Manufactured Small Wind Turbines’.

Follow the link to visit the home page of the OpenAFPM tools and try them out!

https://rurerg.net/open-source-platform/software/openafpm/
 
klapeto
Newbie

Joined: 25/03/2013
Location: Greece
Posts: 5
Posted: 12:53pm 05 Apr 2018
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WE Webinar: Design of AFPM Generators for Small Wind Turbines using the OpenAFPM online tools

http://windempowerment.org/blog/2018/04/05/19-apr-we-webinar-openafpm-tools/

The second WE webinar for this year is scheduled for Thursday 19 April 2018, at 4PM Greek time (GMT+3). (convert to your time ).

Please feel free to spread the news wherever you see potential participants!

We will be hosting Kostas Latoufis who will talk about the "Design of Axial Flux Permanent Magnet Generators for Small Wind Turbines using the Open AFPM online tools". The event will be facilitated by Kimon Silwal.


Find below the link to join the webinar and a more detailed description of the presentation.

We look forward to your attendance on Thursday 19th! Stay tuned for the coming WE Webinars online.

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Abstract of the presentation
The OpenAFPM modeling tools can be used for designing Axial Flux Permanent Magnet (AFPM) generators for wind electric systems with the use of the open source finite element analysis software 'Finite Element Method Magnetics' (FEMM). This series of design tools have been developed by the Rural Electrification Research Group (RurERG) in order to assist designers and practitioners involved with small scale wind electric systems. The OpenAFPM tools series consists of three design tools named MagnAFPM, UserAFPM and OptiAFPM. The tool MagnAFPM can be used for designing a generator for a specific set of rotor blades and a specific set of permanent magnet dimensions. The tool UserAFPM can be used to validate the performance of a specific generator geometry by performing a finite element analysis using FEMM. The tool OptiAFPM uses the particle swarm optimization (PSO) to optimize the dimensions of the permanent magnets used in the generator design for a specific set of rotor blades, while minimizing the generator's cost and mass, and maximizing its efficiency. During the webinar examples on how to use the OpenAFPM tools will be presented and will be followed by Q&A sessions aimed at assisting the users of the tools in their designs.

About the presenter
Kostas Latoufis is an electrical and electronic engineer with a specialization in off-grid renewable energy systems. He received an MEng degree in Electrical and Electronic Engineering from the Imperial College of London (UK) in 2000 and since 2004 he has been working as a researcher in the SmartRUE research group of the Electric Power Division of the National Technical University of Athens (NTUA), in the area of Distributed Energy Resources. He is currently completing his PhD theses on locally manufactured small wind turbine technology in the Fluids Division of the NTUA School of Mechanical Engineering. He started constructing locally manufactured small wind turbines in 2007 with the F.A.R.M.A. collective, later with the Rural Electrification Research Group (RurERG) of the NTUA and then with the School of the Earth 'Nea Guinea'. He organizes design and hands-on courses in renewable energy systems, such small wind turbine, pico-hydro and solar panel construction courses and has carried out several off-grid renewable energy installations in permaculture farms in Greece and in rural development projects in Central America, South Asia and East Africa. He is a member of the executive board of the WindEmpowerment association and collaborates with other international projects such as the Open Building Institute, the Hydro Empowerment Network and the P2P Lab.

About the facilitator
Kimon Silwal is an Electrical and Electronic Engineer graduate from Kathmandu University. He joined KAPEG in 2010 in the position of research staff and is currently working as the company manager. He has worked as activity leader and project leader in more than 20 research and development projects until now with locally manufactured small wind technologies, solar-wind hybrid systems, low head pico-hydro turbines and control system, electric cooking stoves and water purification systems for off-grid applications in collaborations with national and international universities and government organization. Currently, his involvement has been focused towards assisting the Government of Nepal (Alternative Energy Promotion Center) in establishing effective standards, guidelines, and delivery models while consolidating various areas for the further development of the off-grid solar and wind hybrid sector in Nepal.

The creation of the online user interface of the OpenAFPM modeling tools has been supported by WISIONS as part of the SEPS project 'Online Design Tools for Locally Manufactured Small Wind Turbines'.
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This webinar will be in English.
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How to join -

WE Webinar: Design of AFPM Generators for Small Wind Turbines using the OpenAFPM online tools
Thu, Apr 19, 2018 16:00 - 17:00 EEST

Please join my meeting from your computer, tablet or smartphone.
https://global.gotomeeting.com/join/510080437

You can also dial in using your phone.
France: +33 170 950 594
Germany: +49 692 5736 7317
United Kingdom: +44 330 221 0088
United States: +1 (571) 317-3129

Access Code: 510-080-437

First GoToMeeting? Let's do a quick system check: https://link.gotomeeting.com/system-check

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DaveP68

Senior Member

Joined: 25/11/2014
Location: New Zealand
Posts: 292
Posted: 01:31am 11 Apr 2018
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Hi

Will there be a "downloadable podcast" of this event available after it's finished?

Reason for asking is this event is scheduled for 1-2 am Friday 20 April local time here in New Zealand.

David
There are realities if you do not accept, will lead to frustration because you will be spending time on wrong assumptions and the results cannot follow! The Dunning Kruger Effect :)
 
joebog1
Senior Member

Joined: 07/11/2015
Location: Australia
Posts: 114
Posted: 12:06am 12 Apr 2018
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Has anybody else had problems creating an account at
https://rurerg.net ?

Joe
 
klapeto
Newbie

Joined: 25/03/2013
Location: Greece
Posts: 5
Posted: 09:26am 12 Apr 2018
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Hi all,

The webinar will be recorded and will be sent to all registered users of the tools. We will probably upload it on the OpenAFPM website too.

We had some issues with the server from Saturday 7th to Wednesday 11th of April so if you could not register please try again, as the issue has been resolved.

Thanks!Edited by klapeto 2018-04-13
 
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