Assessment of Parabolic Trough and Power Tower Solar Technology Cost and Performance Forecasts

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Assessment of Parabolic Trough and Power Tower Solar Technology Cost and Performance Forecasts ( assessment-parabolic-trough-and-power-tower-solar-technology )

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Case* Project In Service Date Ratio Average/Peak Incident Flux Heat Transfer Fluid Operating Temperature, °C Thermal Storage Fluid Thermal Storage, hr Baseline Solar Two 1996 0.60 solar salt 565 solar salt 3 0.4 Near-Term Mid-Term 5-2 SL-5641 Final Long-Term Solar 220 2018 0.50 solar salt 650 solar salt w/ O2 blanket 17 14 Solar Tres USA 2004 0.51 solar salt 565 solar salt 16 1.1 Solar 50 2006 0.50 solar salt 565 solar salt 16 3.4 Solar 100 2008 0.50 solar salt 565 solar salt 13 6.6 Solar 200 2014 0.50 solar salt 565 solar salt 13 13.8 Receiver Average Incident Flux, MW/m2 0.48 0.49 0.60 0.70 0.80 0.80 Land Area, km2 * All cases assume Kramer Junction 1999 radiation of 8.054 kW/m2/day. Industry and the national laboratories are actively working together to enhance technology to reduce costs. This is being accomplished with industry research and development (IRD) funding and cooperative work with the national laboratories. For example, Boeing and Sandia are currently participating in solar research through a joint Cooperative Research and Development Agreement (CRADA). Boeing reported that they committed $2 million of IRD funds for the Solar Two demonstration project. Boeing is continuing to pursue improvements to the receiver and other systems through internal funding. This effort has resulted in multiple patents and disclosures and in advanced codes (SUNSPOT and RISROC) for field and receiver optimization. A previous CRADA with SunLab was completed to study fabrication of large heliostats. Nexant and Sandia have worked closely to develop improved plant designs and specifications to utilize the lessons learned at Solar Two. Some of the design improvements that are or will be pursued are listed below. • Collector  Mirrors will improve by the use of higher reflectivity thin glass or films, and additional support structure will be made cost-effective by higher volume production (see Appendix H).

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