Solar Energy Technologies Program

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Solar Energy Technologies Program ( solar-energy-technologies-program )

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2003 2004 2005 2006 2007 Task 1: Improve heliostat optical performance and reduce cost 1 Error-correcting heliostat control methodology validated 2. Improved tracking error data collection demonstrated 3. Improved heliostat/field models. 4. Improved wind loading model developed. Task 2: Improve heliostat testing, modeling and design optimization 5. Prototype advanced heliostat design tested. 6. Improved receiver oven cover design tested. 7. Peak flux levels increased to 1.4 MW/m2. 8. Improved salt valves and instruments tested. 9. Evaluate options to increase operating temperature 10. Report on integration of towers into supercritical Rankine Task 5: Receiver Technology >>2018 2 A. Select advanced heliostat concepts worthy of prototype (if any) Task 9: Water reduction Task 11: Simulation and analysis Task 12: Tools for design integration Task 13: Support commercial plant opportunities 112 Milestones Task 3: Address heliostat wind loading Task 4: Advanced heliostat design >>2018 1 Task 6: Salt storage, valves, and instruments Technology 11 Task 8: Power cycle integration 1. Heliostat and dish drive development. 2. Evaluate alternate reflector materials. 3. Atmospheric attenuation data from resource assessment Task 10: O&M technology 3 67 D Go/No Go Decision Milestones 8 2A5 cycles. 11. Reduced water use cycle design options identified. 12. Advanced O&M information systems implemented. 13. Atmospheric attenuation limiations & solutions reported. 14. 2nd-generation integrated tower model available. 9B Task 7: Increase operating temperature 1. Advanced heliostat with 20% lower costs in volume production 3 13 Task 14: Monitor commercial plant performance Solar Energy Technologies Program Multi-Year Technical Plan 96 10 Supporting Input 14 4 12 >>2018 3 2. Peak receiver flux levels increased to 1.6 MW/m2. 3. System with increased operational temperature (600o–650oC). program. Legend B. Increase operating temperatures for supercritical cycles System Power Cycle & Salt Systems Heliostat Field Integration and Balance of Plant Analysis

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