Lindoe Offshore Renewables Center

Slides:



Advertisements
Similar presentations
B ONES O F S TEEL 100 YEARS IN BUSINESS +1MILLION TONNES OF STEEL 4 GENERATIONS E ST MW = 650,000 TONNES S TRENGTH & INNOVATION.
Advertisements

Landsorganisationen i Danmark Lindoe Offshore Renewable Centre Trade union perspectives The Danish shipyards Creation of new green jobs Possibility of.
VALMONT WIND ENERGY, INC. MODULAR TOWER SYSTEMS. Presentation Overview Bigger Machines Modular Tower Systems (MTS) Transportation Restrictions Flexible.
Welcome to Lindø Industrial Park
The first floating wind turbines Martin Jakubowski Technology Architect Blue H Technologies BV, The Netherlands Brindisi, Italia 23rd of May
Self Installing Wind Turbine (SIWT) Mark Riemers – Managing Director.
Offshore Wind 2004 From Vindeby to Nysted A Manufacturer’s Experience Henrik Stiesdal Bonus Energy A/S.
Wind Turbine Session 4.
Pipe Cutting System The evolution of Patented products Designed in Finland pipe cutting.
Vegårshei,Aug 2011, Gunnar Ettestøl1 Offshore wind and wave power rigs. Systems description by: Gunnar Ettestøl, ETTE Elektro, 4985 Vegårshei, NORWAY.
Heritage Products, Inc..
Lunar Energy Copyright DRAFT FOR DISCUSSION Alaska Presentation January 2007.
Western Shipyard history  Established in 1969  1998 privatized by “Western Invest AS”  2001 privatized by “BLRT Grupp”  2003 restructured into WSY.
Staffan Engström, Ägir Konsult AB Stefan Lindgren, VG Power AB
© Siemens AG 2011 Hull Offshore Wind Workshop Siemens Wind Power A/S, Thomas Mousten, Offshore Wind Americas.
Technical Training Basics: What is truss.
October 30, 2007 © SKF Group Slide 0. Why is there no ideal bearing concept EWEC 2012 Presented by Reiner Wagner, Application Engineering Manager Renewable.
b. Located in Portland (Sherwood), Oregon. Products engineered and manufactured in house. On-Site Machine Shops, Welding, Electrical, Final Assembly.
Advantages of Lattice Towers
© ABB-EWEC 2006 ATHENS /03/06 EWEC 2006 Athens The Challenges of Offshore Power System Construction Peter Jones Lars Stendius ABB.
Shipyard Layout. Big Bigger Biggest Manufacturing Processes.
Deep Water Offshore Wind Energy By Paul D. Sclavounos Horns Rev Wind Farm (Denmark) - Rated Power 160 MW – Water Depth 10-15m.
ASME Oral Presentation Competition Stevens Institute of Technology Mechanical Engineering Dept. Senior Design 2005~06 April 1 st, 2006 Presented By: Lazaro.
© ABB SG_Presentation_rev9b.ppt | 1 © ABB SG_Presentation_rev9b.ppt | 1 Smart Grid – The evolution of the future grid Karl Elfstadius,
Electric drill BADI 1 John Errington. engineering considerations for design  Safe use of electricity – possible damp and dirty conditions  Suitability.
THE POWER OF THE WIND. The wind: a key factor in world economy Wind needs clean, renewable and competitive sources of energy; wind is a very competitive.
The Quality Source for Cold Finished Steel Bars. Founded in 1989 by leaders in the manufacturing industry Started in flats, due to customer demand, WPS.
Design of the Z72 wind turbine with direct drive PM generator
SHIFT_MPE SHIFT_MPE EMTISA Sant Andreu de la Barca, Barcelona, Spain
MESSER CUTTING SYSTEMS (CHINA) LTD Best Facility… Make Best Quality…
Problems SHORTAGE of renewable, clean electrical generating capacity SHORTAGE of renewable, clean electrical generating capacity NEED FOR ENERGY SECURITY.
 Large Blade Testing Facility LARGE WIND TURBINES Rahul Yarala Executive Director, Wind Technology Testing Center May 12, 2011.
Mortenson Canada Corporation Proprietary and Confidential Construction and Contracting Clean Energy BC November 8, 2010.
Growth Innovations Kite Group Final Project Presentation 6 April 2006 Chris Boven Trever Carnes Brandon Henley Emmanuel Zoubovsky.
Day 20 PRECAST AND PRE-STRESSED CONCRETE Pre Cast concrete comprise units that are made under controlled conditions, with necessary preparations for.
Wind Energy in Denmark Industry and framework Camilla Holbech, Senior Policy Adviser Danish Wind Industry Association.
ECOTECNIA 100: On-shore Multi Mega-Watt Windturbine Juan Mª Cámara 28th February 2006.
Industrialized Floating Foundation
WIND TURBINE CONTROL DESIGN TO REDUCE CAPITAL COSTS P. Jeff Darrow(Colorado School of Mines) Alan Wright(National Renewable Energy Laboratory) Kathryn.
North Coast Wind Farm Tolano Environmental Consulting.
08/11/2013 Tidal Energy: a Vision from West Normandy Region and ALSTOM Thematic Workshop 2: Energy J. CREST, Business Development Manager, ALSTOM Ocean.
Design of Proposed Wind Turbine Tower Testing Facility at the University of Wyoming Original Design (Fall 2011): Wade Burkett Margaret KimblePresented.
1 Short introduction of Flumill October Executive summary - Flumill CFD Tank test Tow test Pilot testing at EMEC ѵ ѵ ѵ ѵ Low weight Low cost Easy.
Welcome to Cedar Ridge Wind Farm Alliant Energy’s first fully owned-and-operated wind facility.
__________________________ © Cactus Moon Education, LLC. CACTUS MOON EDUCATION, LLC ENERGY FROM THE WIND WIND TECHNOLOGIES.
Company Profile Heavy Engineering Machinery Castings and Forgings Cut Parts Production Facilities Contact Address Heavy Engineering Components Producer.
Life Cycle Assessment Assessing local impacts María del Mar Pintor
SYNCHRONOUS GENERATOR
THREE-PHASE INDUCTION MOTOR
YEL WIND POWER PROJECT. YEL WIND POWER PROJECT.
Sub Station.
Anatomy of Modern Wind Turbine & Wind farms -II
Parul Polytechnic Institute
Renewables Capability Presentation All Energy May 2017
North sea wind power hub
By: Nawaz Haider Bashir SESE_Science GHS Patti Bulanda
WIND POWER PLANT Wind Power Plant.
Siemens Gamesa Renewable Energy The best technology for your wind projects in Brazil 30 August 2017 © Siemens Gamesa Renewable Energy.
ECE 333 Green Electric Energy
- BEAM Sinusoidal Web Beam
Innovation and Offshore Renewables
Wind Energy.
Lift-Type (the sweep surface faces the wind)
Why is starter necessary for a three-phase induction motor?
MSD P15280 RIT HOT WHEELZ TEST BENCH
The evolution of pipe cutting Patented products Designed in Finland Pipe Cutting System.
Problems SHORTAGE of renewable, clean electrical generating capacity
ME 252 Thermal-Fluid Systems G. Kallio
Operational Container General Cargo Dry Bulk Ferry Cruise
Strictly confidential
Presentation transcript:

Lindoe Offshore Renewables Center Cutting the cost of harvesting offshore renewable energy

Who is LORC? LORC is a non-for-profit commercial foundation LORC shall create growth by assisting the green offshore industry with a constant focus on cost of energy. Strengthen national wind energy hub complement national and international test infrastructure provide independent verification Danmark har historisk set en førerposition inden for udvinding af vindenergi. Offshore vind skal være det nye store eksportemne og en af forudsætningerne er, at vi bliver de bedste til at teste og kvalitetssikre installationer, som skal stå langt fra kysten.

Business scope LORC is building a state-of-the-art test facility for offshore wind technology Nacelle testing [functional and grid test, HALT test]; under construction Foundation and Mechanical testing; construction to commence Q1, 2014 Laser welding technology; in operation

Key figures for Lindø-infrastructure (LIP) I 1.000.000 m2 developed industrial area Additional 2.000.000 m2 green field area 1,200 m quay with depth 7,5m Neighbor Odense Harbor Terminal with depth 11m Future expansions in planning

Key figures for Lindø-infrastructure (LIP) II Unique infrastructure with transport and handling capacity up to 1000 tons 166.000 m2 hall facilities in different sizes rented out to different companies (70 companies located @ LIP ( 1200 workers/staff)

LORC nacelle testing taking advantage of the unique infrastructure @ LIP New building below 1000T gantry crane Removable roof tops for easy nacelle installation

LORC nacelle testing Two test docks for optimized testing and competitive prizing HALT tester (lifetime) Function tester

LORC – HALT testing I Hydraulic wind load unit in a hexapod configuration Prime mover for torsional torque

LORC – HALT testing II Mechanical dynamic testing of the drivetrain Programmable stress cycle to verify lifetime of drivetrain components (main bearing / Gearbox etc.)

LORC – Function test I Unique system to test nacelle including hub

LORC – Function test II Special adaptor allows for operational pitch system Original turbine hardware Original turbine software Extreme events can be tested Interfacing electrical system at HV side of transformer 33kV test voltage Artificial grid connection for full grid code verification LVRT – HVRT – Frequency response Park performance

LORC – Function test III 12MW motor @10RPM 12.000.000 Nm (1.200 kg in 1km) Max nacelle data: 10 MW 500 tons 7,25 m 3 m 29 m

LORC – Function test IV

LORC – Function test V

http://www.lorc.dk/test-center/lorc-nacelle-testing-video Ideal facilities for industry LORC is located at the heart of the A.P. Møller-Mærsk A/S owned Lindoe Industrial Park, with an ideal location close to the main sailing route between the North Sea and the Baltic Sea. This well-known shipyard has ideal facilities and unique opportunities for 1:1 scale testing and demonstration. Transportation: 1,100 t transportation capacity, 5 self-propelled modular transporters with a connection possibility, 3 terminal tractors/Sisu transporters (70t), 4 loaders (6 t), multiple beds. The site has its own harbor with a depth of 7.5 m. Steel Structure Production: Offloading of steel: 1 tower crane, 90 t, 150 m quay side Steel plate inventory management: 4 x 20 t magnetic cranes, capacity 50,000 t steel Blasting and priming: Blasting machine, Priming machine, breadth of plates 3.2 m, capacity 150,000 t/year Cutting and milling: 23 cranes of 0.5 to 22 t (11 magnetic, 10 hook, 1 vacuum, and 1 service), 20,000 m2, 2 profile cutting robots, 8 cutting machines and length of plates 16 m Assembly: 20 cranes of 1 to 700 t, 60,000 m2 in total Surface treatment: 8 cabins of 34 * 34 m = 9,000 m2, painting and sandblasting equipment, dry ice blasting Outfitting shops: 2 cranes of 60 t, 3,000 m2 indoor facility 100,000 m2 + potentially 120,000 m2 more Component production: +20 cranes of max. 5 t. 5,000 m2, welding machinery, bending machinery Pipe production: 5,000 m2, welding machinery, bending machinery, diameter 1 m, length 6 m Dock facilities: 1 gantry crane of 1,000 t, 3 tower cranes of 100 t, 1 tower crane of 50 t, 8 m in dock 3 Verdens største containerskiber er bygget her. Eksperter i svejsning og maling