The Proven 15 kW turbine; designed for reliability and performance

Slides:



Advertisements
Similar presentations
Wind Farm Noise Impact Assessment SMALL WIND TURBINE DEVELOPMENTS.
Advertisements

Offshore Wind 2004 From Vindeby to Nysted A Manufacturer’s Experience Henrik Stiesdal Bonus Energy A/S.
Wind Turbine Session 4.
Small Wind Production Wind power solutions at home.
WORLDWIDE WIND ENERGY SOLUTIONS State-of-the-art midsize (50 to 500 kW) wind turbines reducing your energy cost. Designed for industries, farms schools,
Product Support Manager
Presentation outline Product development process: =>Design for Six Sigma =>Advanced modelling tools Practical examples => SKF quiet running bearing.
Lecture 30 November 4, 2013 ECEN 2060 Lecture 30 Fall 2013.
Offshore Wind Turbines
Wind – tapping into a renewable energy resource
ENERGY----NO CONSUMPTION, BUT CREATION Yangzhou Shenzhou Wind-driven Generator Co., Ltd 60KW ON-GRID WIND TURBINE SYSTEM.
Reflecting the global progress in raising standards of product innovation, SPIndustries provide solutions with special developed equipment that covers.
Alternate Energy Activities A look at Wind Power.
Deep Water Offshore Wind Energy By Paul D. Sclavounos Horns Rev Wind Farm (Denmark) - Rated Power 160 MW – Water Depth 10-15m.
CH 410 Summer 2009 Joe Musgrave and Ted Walker
Wind Energy Chemical Engineering Seminar By: Jacqueline Milkovich.
Importance of advanced simulations of electrical system in wind turbines April 2010.
P14415: Subsystem Design Review Patrick Morabito John Wilson Michael Coffey Nathan Conklin Samuel Svintozelsky.
Urban Wind Power. Why? Locations, where is no space for large turbines Energy savings o Preventing energy transporting losses from larger power plants.
An Introduction to wind power By Jack Bradley, University of Bradford.
March 2006 Development and Test of a 5 kW Wind Turbine for Modular Autonomous Supply Systems Berthold Hahn Paul Kühn Institut für Solare Energieversorgungstechnik.
Design of the Z72 wind turbine with direct drive PM generator
Wind, wave and tidal energy DNV serving the energy industry.
Design Process Supporting LWST 1.Deeper understanding of technical terms and issues 2.Linkage to enabling research projects and 3.Impact on design optimization.
Power Generation from Renewable Energy Sources
1 11 A review of wind energy technologies part two. Adviser : Dr. Yuan-Kang Wu Student : Po-Kai Lin Date :
Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.
Inst. A. Ayvazian & Associates. WHAT IS WIND P= ½ ƞ ρ air A V 3 ρ air = 1.225kg/m 3 600kW (A=1320m 2 ) (41 m Dia Rotor) 3MW (A=7850m 2 ) (100 m Dia Rotor)
In general, windmills were used as early as 200 B.C. in Persia. Windmills first appeared in Europe during the middle ages, around 11 th to 12 th centuries.
UK growth in small wind Richard Caldow Field operations manager.
Answers to Windmill Project Research Questions
Wind energy By Govind Singh Shekhawat
WIND ENERGY. WIND Wind is the movement of air across the surface of the Earth, from areas of high pressure to areas of low pressure. The surface of the.
By John Zavalney. Quick Write Have you ever seen wind do work? Describe what and where you saw it?
Introduction people business vision and goals Product design aims features and benefits competitive comparison current status What we are looking for manufacturing.
Wind – a renewable energy resource.
Wind Turbine Aerodynamics Section 2 – Power Control E-Learning UNESCO ENEA Casaccia - February Fabrizio Sardella.
Wind power By Stephen Ha. How it works The blades spins the rotor The rotor spins the low speed shaft The low speed shaft is connected to a gear box which.
ECE 7800: Renewable Energy Systems
Wind Power and its Science As one of the powerful energy sources.
EWEC2007 Milano, 8 May 2007 Extrapolation of extreme loads acc. to IEC Ed.3 in comparison with the physics of real turbine response Dirk Steudel,
Renewable Energy Research Laboratory University of Massachusetts Wind Energy: State-of-the Art and Future Trends Southwest Renewable Energy Conference.
Period 1 presentation. The ruins of a Persian windmill.
AAE450 Spring 2009 Final Slide Concepts March 26, 2009 [Cory Alban] [Mission Ops] [Locomotion] 1.
Chris Santos, Sean Tegeder, and Christine Zaky 7A.
AES Buffalo Gap Wind Farm Buffalo Gap MW 155 – GE 1.5 sle Presented August 22, 2008 By Robert Sims AES Wind Generation.
By Hasaan Ahmed Anthony Landeros Chris Boquet. The most common wind electricity-generating method is using wind turbines. The wind turns large turbine.
FOUNDATION There are many different designs on how to make the foundation but all of them consist of rebar (around 15 miles total) and lots and lots of.
Power Generation from Renewable Energy Sources Fall 2012 Instructor: Xiaodong Chu : Office Tel.:
IB Physics Topic 8 – Solar and Wind 3 Mr. Jean. The plan: Video clip of the day Energy production –Solar Power –Wind Power.
Wind Turbine Design Methods
ECOTECNIA 100: On-shore Multi Mega-Watt Windturbine Juan Mª Cámara 28th February 2006.
By: Scott Rentschler.  Utility Scale  Industrial Scale  Residential Scale.
Period 7.   The more curved side generates low air pressures, due to more surface area. While high pressure air, pushes on the other side of the design.
Market and Customer Needs
Power Plant Construction and QA/QC Section 8.3 – Wind Energy Technology Engineering Technology Division.
IB Physics Topic 8 Mr. Jean March 3 rd, The plan: Video clip of the day Energy production –Solar Power –Wind Power –Water Power.
WORLDWIDE WIND ENERGY SOLUTIONS State-of-the-art midsize (50 to 500 kW) wind turbines reducing your energy cost. Designed for industries, farms schools,
A New Standard For Small Wind Turbine
Bartosz Turek.  History of Wind Power  The Trend for the Future  Types of Turbines  Pros and Cons of Wind Power  Intermittency  Storage Options.
Wind The wind's kinetic energy can be harnessed by a wind turbine. The wind moves the turbine's blades, which transfer energy through a central hub to.
Chapter 8, pp (*figures from text)
Wind Power Kelly Farmer.
Sailcloth turbines for water pumping, Lasithi plateau, Crete
By: Nawaz Haider Bashir SESE_Science GHS Patti Bulanda
Wind Farm: Generators that produce AC are generally equipped with features to produce the correct voltage (120 or 240 V) and constant frequency.
Siemens Gamesa Renewable Energy The best technology for your wind projects in Brazil 30 August 2017 © Siemens Gamesa Renewable Energy.
Anatomy of Modern Wind Turbines-1
ME 252 Thermal-Fluid Systems G. Kallio
Wind Turbine Types.
Presentation transcript:

The Proven 15 kW turbine; designed for reliability and performance EWEC Athens 2006, CW32. Small wind turbine systems. Proven Energy Ltd., Johnnie Andringa www.provenenergy.com

Next 15 minutes Products & company Turbine design & safety 15 kW blade development Blade material Moulds and process Blade tests Further Development Turbine performance Status

Products First turbine Rannoch Moor, now, 17 years later still up & running 2.5 and 6 kW Transition from off-grid to on-grid Household and professional customers

Company Based in Scotland; high winds and many remote islands Export to over 30 countries 2005; 150 turbines, growing over 50% year on year

Turbine design Simplicity: reliability Direct drive PM generator, no rotating coil Brake disk Downwind, passive yaw Low rpm; tip speed < 65 m/s; low noise

Safety mechanism Passive pitch: elastic hinge with prestressed springs Blades cone downwind

15 kW development Same concepts as smaller turbines Basic numbers: 9.5 m diameter 95 …160 rpm rated 11 m/s Blade: twintex; 15 kg each Development started 3 years ago

Blade development 2.5 kW; full PolyPropylene as blade material Tough and non-sticky 6 kW; wood epoxy Manufacturing of larger shapes Vulnerable (impact) 15 kW started with glass-epoxy ended with twintex (Glass with PP matrix) As above and ‘recyclable’; melt PP from glass However; ‘NEW’ material and process

Moulds Elevated temperature; expensive moulds

Process Filling of mould Blade has a rib Vacuum forming in oven

Blade testing Hinged blade; low bending moments (IEC) Static tensile & bending test Same design, same mould Improvements in production Over 3-fold increase in critical strength More consistent quality

Further development Hub, Generator, Controller, Automatic brake Covers are designed; styling of turbine

Turbine Performance Theoretical / experimental analysis of springs Optimise power curve and safety mechanism

Status PERFORMANCE was achieved early Establishing RELIABILITY took longer, especially with new production process Now entering final 6 months live cycle test Full scale production starts 2007 IEC 61400/2 standard and procedures helpful