Made in the USA. Vertical Axis Wind Turbines  Are inefficient (<20%)  Do not produce enough power for industrial-scale applications Large Wind Turbines.

Slides:



Advertisements
Similar presentations
Demand Response in Ontario Paul Grod, CEO, Rodan Energy July 11, 2013.
Advertisements

INVESTMENTS IN POWER SECTOR
An Innovative Method to Reduce Electricity Costs ICONICS 2008 Worldwide Customer Summit April 8, 2008 Tim Shreve Manager Automation Technology Group-Systems.
Renewables (CHP), Global Warming, and Energy Efficiency Richard Brent Solar Government Affairs Lake Tahoe, California July 28, 2005 California Manufacturers.
Wind Speed Lab Source:
1 An Overview of Small Wind Energy Today Shawn Shaw The Cadmus Group, Inc. Sierra Club Northeast Committee Fall Energy Conference 10/12-10/14/2007.
Opportunities from ‘Dynamic Demand Control’
Regional Policy Common Indicators: Energy & Climate Change Definitions and Discussion Brussels, 22 nd November
1 Making US Industry More Competitive: Increasing Energy Efficiency Lester B. Lave Electricity Industry Center Carnegie Mellon University.
Solar Water Heating as a Green House Gas Reduction and Energy Conservation Strategy Florida Solar Energy Industries Association and Florida Solar Energy.
BREAKOUT SESSION 2 Smart Grid 2-B: Grid Integration – Essential Step for Optimization of Resources Integrating Intermittent Wind Generation into an Island.
Presentation to State Water Resources Control Board November 14, 2012 By Dave Modisette Executive Director California Municipal Utilities Association.
Grenada Sustainable Energy Plan Stakeholders Meeting April 5, 2002.
Renewable Energy Workshop 2012 Global Market Impacts on Wind and PV Technologies A Presentation to the Bucknell University Renewable Energy Workshop –
2010 Renewable Energy Vermont Distributed Generation Northeast Conference Wilson Rickerson May 19 th, 2010 The Story of Vermonts Feed-in Tariff – Lessons.
New Technology Improves Efficiency of Universitys Energy Infrastructure Frank Brewer Associate Vice President for Facilities Management University of Maryland.
Photograph Courtesy of Union of Concerned Scientists Website.
POTOMAC WIND ENERGY Presents: Small Wind Turbines for residential and business use. May 2008.
Lessons from community energy projects in Wales A brief overview Matthew Leese 1.
The Landscape of Solar Industry in China 1. 2 Landscape of Solar Industry in China  8 IPO’s since 2005,100+ solar fab’s built  In 2009, volume of polysilicon.
Electricity distribution and embedded renewable energy generators Martin Scheepers ECN Policy Studies Florence School of Regulation, Workshop,
EnvironmentEnvironnementCanada Nusa Dua, Bali, Indonesia September 5 – 7, Part 4: LFG Utilization.
Paul Acchione, P. Eng., B.A.Sc., M. Eng. Chair – OSPE Energy Task Force Management Consultant – MIDAC Corp. Presented to the Energy Mini-Conference Series.
Energy Storage on the Grid: Informing Future Development Eric Hittinger Advisors: Jay Whitacre, Jay Apt Department of Engineering and Public Policy Carnegie.
© 2011 Underwriters Laboratories Inc. Emerging Implications of DC Power & Energy Storage Ken Boyce NFPA Alternative Energy Technologies and Electrical.
John Herrick Chief Counsel, U.S. Department of Energy, Golden CO 1 January 18, 2006 ABA Teleconference Commercialization of Hydrogen Technologies John.
Power Generation In Singapore Presented By CHAN Y K Commercial Specialist Commercial Service, Singapore.
FUTURE IPP’s CAN BENEFIT FROM EXISTING EUROPEAN NET METERING SYSTEMS. Johan Woudstra (THU) & Ben Groenewald (CPUT)
CHANGES IN ELECTRIC GENERATION Generation vs. Demand: Demand growing 3% per year New Generation more difficult to build.
Field Experience with Ground-Source Heat Pumps in Affordable Low Energy Housing Daniel Ellis President ClimateMaster, Inc. Oklahoma City, U.S.A.
© 2006 San Diego Gas & Electric Company. All copyright and trademark rights reserved. Microgrid – A Smart Grid Alternative Service Delivery Model? Thomas.
City of Fort Collins, CO RDSI Secure Microgrid Demonstration Project 2013 National Town Meeting on Demand Response and Smart Grid July 11, 2013 Washington,
Status and Prospects of New and Renewable Energy in Korea KunMo Chung President Korean Academy of Science and Technology.
PGE Renewable Power The Costs of Change. The Power to Make a Difference Who & What we do Where we are today & where we came from What are renewables &
Solar Energy in Hawaii BY XINMEI LIANG. Hawaiian Electricity Generation.
© ABB SG_Presentation_rev9b.ppt | 1 © ABB SG_Presentation_rev9b.ppt | 1 Smart Grid – The evolution of the future grid Karl Elfstadius,
Powering forward. Together. Pathways to ZNE: SMUD Perspectives, Grid Impacts, Shared Solar Obadiah Bartholomy Rebecca Rundle Stephen Frantz Presented at.
Do Now What is renewable energy? What are some examples of renewable energy? Do you know of any local examples of renewable energy?
Small Wind Systems Southwest Renewable Energy Conference Andy Kruse.
Energy Trends. 2 Trift bridge 560’ long 333’ high.
Partnering with Our Customers in Demand Side Management Mark Wallenrod Director DSM Program Operations Southern California Edison Southern California Energy.
1 © Alexis Kwasinski, 2012 Kitakyushu smart community.
1 SMERC Presentation Corporate Overview May 2011.
GE Energy Financial Services Policy Options Shaping Private Investments in Clean Tech Kevin Walsh Managing Director, Power & Renewables May 1, 2009.
How to deliver a Renewable Energy Project Jemma Benson CO2Sense Yorkshire.
BMT Designers & Planners 1 Wind Farm Technology: Is it the Answer? National Defense Industrial Association (NDIA) 30 th Environmental and Energy Symposium.
City of Fort Collins Wind Power Program March 24, 2004 John Phelan, PE Energy Services Engineer.
Prepared for: ERCOT September 8, Ask Yourself….. What would you attempt to do if you knew you could not fail? 2.
Virginia Information Technologies Agency Green Technology Initiatives
Small Wind 101: An Overview of Small-Scale Wind Electric Systems Affordable, Clean Energy for Homes, Farms & Businesses.
Frankfurt (Germany), 6-9 June 2011Frankfurt, 6-9 June 2011 Yi Lu – China – S1 – Paper 0693 A Universial Power Electronic Interface for Distributed Generation.
Wind Turbine Design Methods
New York State System Benefits Charge (SBC) – NGA Center for Best Practices April 29, 2004 Bob Callender Vice President for Programs NYSERDA.
Energy vs. Power?. POWER Power= the rate at which energy is used measured in watts (joules/sec)
New Government Policy on Energy Efficiency By Subodh Kumar Scientist Central Road Research Institute New Delhi ,
Smart and Advanced Metering in the UK – an overview
Exploring Wind Energy.
Energy Efficiency Forum Energy Efficiency Forum En ergy Savings: Where to Find Them September 27, 2006 Jim Parks, Program Manager Energy Efficiency and.
Russell Shaver– Austin Energy Emerging Technology March
Clean Energy Project Analysis Course Clean Energy Project Analysis with RETScreen ® Software © Minister of Natural Resources Canada 2001 – 2004.
Frankfurt (Germany), 6-9 June 2011 Cristiano Marantes – UK – RT 4C – Paper 1192 Experiences from Major Smart Grid Demonstrators Dr. Cristiano Marantes.
Bartosz Turek.  History of Wind Power  The Trend for the Future  Types of Turbines  Pros and Cons of Wind Power  Intermittency  Storage Options.
Wind Power in Korea Seokwoo Kim, Ph. D Korea Institute of Energy Research Daejeon, Korea.
Kansas State University
Solar panel installation in Oakley ca Element Power Systems is a fully licensed and insured California State Contractor --
Exploring Wind Energy. What Makes Wind Exploring Wind - 10/19/17 - ©The NEED Project.
Lower-cost Hydrogen or Ammonia Fuel from Distributed Wind
Exploring Wind Energy.
Exploring Wind energy.
Wind Development & Policy Options
Presentation transcript:

Made in the USA

Vertical Axis Wind Turbines  Are inefficient (<20%)  Do not produce enough power for industrial-scale applications Large Wind Turbines  Create false RADAR signatures  Need 60 Acres of Land / MW of power  Projects stalled or stopped due to  wildlife concerns  lack of transmission lines Made in the USA

Nacelle Generator Inverter Steering motor Belt Drive Turbine Concentrator Controller 50 ft (15 m) 14 ft (4 m) Interior View of Cal-ePower 10 kW wind turbine Made in the USA

Simulation produced by Dr. Tim Colonius of the California Institute of Technology. RED = High Wind Velocity BLUE = Low Wind Velocity Made in the USA

 Forward airfoils channel air into the attached turbines Also channel air into following turbines  Increase efficiency of turbines contained in the array | 7 Made in the USA

Data based on Rayleigh Distribution of Wind Speeds and Cal-ePower 10 kW Theoretical Power Curve

Our Cal-ePower 10 K has a lower price and levelized cost for power Information contained in this table was calculated from self-published power production numbers posted on the websites of each competitors’ company, and from published price data. Levelized cost of power calculations were done using the NREL RET Finance calculator, and only include the cost of the turbine, tower and inverter. Our competitors’ costs were back-calculated from retail price by assuming a 33% profit margin. The levelized cost calculations do not include the cost of installing the 3 MW DG system. Payback does not include government incentives of any kind.

| 11 Made in the USA Data from the California Energy Commission

 Less likely to produce false RADAR signals  Large wind turbines can produce false radar signatures of storms and planes  Our low height and composite construction means  The Cal-ePower 10 kW turbine will not interfere with RADAR Made in the USA 60 ft 410 ft 50 ft

 Provide Wind Power Without RADAR Problems  Greatly Reduce Electricity Costs  With 6 m/s wind speeds (>13 mph)  A 3 MW system has a levelized cost of power $0.08/kWh Saves $0.15-$0.30/kWh in Hawaiian Islands  Levelize Electricity Costs  Over 20-year lifespan  Easier Budgeting  Reduce CO 2 Emissions by 15 tons/yr/turbine  3 MW System Saves 4,500 tons of CO 2 /yr  Work Within a Smart-Grid  Computer-controlled power regulation  Power from our DG system can be up- and down-regulated with demand Made in the USA

 Initial Venture funding received  Production initiated  Three Demonstration Sites Planned  Palm Springs, CA, Nova Scotia, and Oahu, HI  Partnerships established with several ESCO and EPCs Made in the USA

Small Wind Turbines Residential Use Large Wind Turbines Utility-scale power CE&P Distributed Generation Systems 220 or 440 V systems 10 kW – 10 MW Smart-grid compatible, controllable power Power from home to utility scale Made in the USA Cal-ePower 10 kW DG System Industrial-Scale Power < <

Made in the USA

 CE&P Distributed Generation Systems  Less grid impact to lose 10 kW than 1 MW  Concentrator smoothes wind spikes, keeping power more constant Made in the USA

 High Density, On-site, Controllable Power  Will Not Interfere with Radar Systems  Rapid Return on Investment  Less Disruptive to the Grid  Ease of Manufacturing  Ease of Assembly  Low O&M Costs  High Durability Made in the USA

 Accepting orders for demonstration turbines  Accepting orders for distributed generation systems  Investment of $4 Million for scaling up  Licensing Opportunities are available Made in the USA

Contact: California Energy & Power 511 East Route 66 Glendora, CA Phone (626) Michael Allawos, President/COO Web-Site: Made in the USA