Virginia Offshore Wind Supply Chain Educational Forum The Cultural Arts Center at Glen Allen Glen Allen, VA 07 December 2010 Virginia’s Wind Resources.

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Presentation transcript:

Virginia Offshore Wind Supply Chain Educational Forum The Cultural Arts Center at Glen Allen Glen Allen, VA 07 December 2010 Virginia’s Wind Resources on Land and Offshore – Key VCERC Study Findings George Hagerman VCERC Director of Offshore Wind Research Virginia Tech Advanced Research Institute Jonathan Miles Technical Director VCERC Virginia Wind Energy Center James Madison University

Comparing Key Aspects of Land-Based and Offshore Wind Energy Resources in Virginia Class 3+ areas needed for economical onshore projects are largely on ridges in national forests and parks, but even projects on private land seem difficult to permit Class 5+ areas needed for economical offshore projects are in federal waters beyond 3-n.mile limit of state jurisdiction National Forests, Blue Ridge Parkway, Appalachian Trail, state parklands, and county-by-county zoning variability Federal regulatory authority is the Bureau of Ocean Energy Management, Regulation, and Enforcement Source:

Ownership of Virginia’s Wind Energy Areas Two-thirds of Virginia’s Class 3+ wind energy resources are located in the state waters of the Chesapeake Bay and Atlantic Ocean. Of the remaining third on shore, more than half are located on publicly used Federal lands.

Wind Resources in Harrisonburg Vicinity George Washington National Forest LEE Ranger District Shenandoah National Park George Washington National Forest DRY RIVER Ranger District Private ownership

Wind Resources in Lexington Vicinity George Washington National Forest DEERFIELD, WARM SPRINGS, and JAMES RIVER Ranger Districts Thomas Jefferson National Forest George Washington National Forest PEDLAR Ranger District Thomas Jefferson National Forest

Wind Resources in Roanoke Vicinity Mount Rogers National Recreation Area Thomas Jefferson National Forest

Virginia’s Offshore Wind Potential is Large; Is it Cost-Competitive with Fossil Fuel Generation? Fentress VCERC identified 25 MMS lease blocks that appeared to have minimal conflict with existing uses by the Navy, NASA-Wallops, commercial shipping, or commercial fishing. These are all beyond 12 nautical miles offshore and in water depths less than 100 ft, and could support 3,200 MW of wind capacity generating 11 TWh/yr, or 10% of VA’s annual energy demand.

Hypothetical Offshore Wind Project Location for Cost & Performance Evaluation

Offshore Wind Project Cost Estimated by VCERC Cost Model Capital cost estimated in March 2008 dollars using NREL parametric model for wind turbine & tower, Virginia maritime supplier bids for foundations & installation, and published data for balance of plant Plant cost at offshore busbar:$ 1,763 million Transmission cost to Fentress:$ 153 million Total project investment:$ 1,916 million (~ $3,260 / kW) 588 MW installed rated capacity (7 x 7 turbines per lease block) 38% annual capacity factor 20% PJM summer capacity factor (JJA 3pm – 6pm) Vestas V90-3MW

VCERC Modeled Capital Costs Compared with European Project Data for Major Cost Centers London Array I 630 MW Siemens SWT Global Tech I 400 MW Multibrid M5000 Thanet 300 MW if fabricated in Hampton Roads Lincs 270 MW Based on MTH announced contract value in March 2010 Lincs 270 MW Based on MTH max steel weights if fabricated in Hampton Roads

VCERC Modeled Capital Costs Compared with European Project Data for Major Cost Centers London Array I 630 MW Nexans 150 kV 50 km offshore Sheringham Shoal 317 MW Nexans 145 kV 20 km offshore Sheringham Shoal 317 MW 81 km, 36 kV Nordsee Ost 288 MW 63 km, 33 kV VCERC Model 588 MW 138 kV 28 km offshore VCERC Model 588 MW 168 km, 33 kV

Updated fuel market scenario 2012 price: $60-80 per short ton 4% to 6% real annual escalation (see back-up slides) Cost of Energy Comparison Between Offshore Wind and New Coal-Fired Generation

European turbine supply Domestic turbine supply Cost of Energy Comparison Between Offshore Wind and New Coal-Fired Generation

Cost of Energy Comparison Between Offshore Wind and New Gas-Fired Generation Updated fuel market scenario 2012 price: $ per MMBTU 2% to 4% real annual escalation (see back-up slides)

European turbine supply Domestic turbine supply Cost of Energy Comparison Between Offshore Wind and New Gas-Fired Generation

Offshore Wind Economic Development: Breakdown of Capital Investment by Percentage Turbine & Tower Package 66% Power Collection: 6% Power Transmission: 5% Local Balance of Plant 21% Project Management 2%

Turbine & Tower Package $1,268 million Submarine Power Cables $213 million Local Balance of Plant $395 million Project Management $40 million 588 MW reference baseline Offshore Wind Economic Development: Dollars and Jobs Breakdown for One Project

Turbine & Tower Package $1,268 million Submarine Power Cables $213 million Local Balance of Plant $395 million Project Management $40 million 588 MW reference baseline Local Balance of Plant 1,440 jobs for two years (direct + indirect + induced) Turbine Assembly and Component Manufacture (based on 2007 EU data) 7,350 jobs for two years (direct + indirect) Offshore Wind Economic Development: Dollars and Jobs Breakdown for One Project

Turbine & Tower Package $1,268 million Submarine Power Cables $213 million Local Balance of Plant $395 million Project Management $40 million 588 MW reference baseline Local Balance of Plant 1,440 jobs for two years (direct + indirect + induced) Turbine Assembly and Component Manufacture (based on 2007 EU data) 7,350 jobs for two years (direct + indirect) Offshore Wind Economic Development: Dollars and Jobs Breakdown for One Project

Early, Meaningful Engagement of Local Stakeholders Essential to Success

Virginia Offshore Wind Development Authority Established to Provide Enabling Infrastructure Before making a ~$2 billion investment (as would be needed for a 600 MW project in federal waters) or a $500 million investment in a Hampton Roads turbine manufacturing complex, full-scale offshore testing must be done (costing $60-75 million over 5 yrs)

Virginia’s Concept for a National Offshore Wind Test Center in Hampton Roads In response to a recent Department of Energy Request for Information (RFI), Virginia has suggested the concept of a National Offshore Wind Test Center, developed in three stages that would offer progressively more energetic wind climates and more challenging conditions for turbine access. The Stage II test pads would be cited at least 1 km south of the CBBT.

Thank You! Any questions? or PDF of Virginia response to DOE RFI is posted at: Offshore%20Wind%20RFI%20Response%20Final.pdf VCERC Offshore Wind Studies Final Report:

Historical Volatility in Coal Prices Source: Edison Electric Institute: Q Financial Update: Fuel ( 2010_Q2_Fuel_Final.pdf) Coal prices are rebounding more quickly than assumed in original VCERC report

Recent Delivered Coal Prices Source: Edison Electric Institute: Q Financial Update: Fuel ( 2010_Q2_Fuel_Final.pdf) Assumed price range in first year (2012)

Near-Term Forecast of Central Appalachian Coal Spot Market Prices Source: Edison Electric Institute: Q Financial Update: Fuel ( 2010_Q2_Fuel_Final.pdf) 6% nominal annual escalation rate

Historical Volatility in Natural Gas Prices Source: Edison Electric Institute: Q Financial Update: Fuel ( 2010_Q2_Fuel_Final.pdf) Natural gas prices have declined and are likely to have a lower 2012 price than assumed in original VCERC report

Near-Term Forecast of Henry Hub Natural Gas Spot Market Prices Source: Edison Electric Institute: “Q Financial Update: Fuel” ( 2010_Q2_Fuel_Final.pdf) 4% nominal annual escalation rate