Chris Myers, VP of Energy Programs for Lockheed Martin, presented at the GW Solar Institute Symposium on April 19, 2010. More information at solar.gwu.edu/Symposium.html
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30. Solar Field Experience Solar Field Experience Technical Activities - General Full-Scale Prototype Tools Production Performance Modeling Requirements Definition Solar Collector Assembly Design Heat Transfer Fluid System Programmatic / Procurement Activities
31. Solar Field Technical Activities Production Performance Modeling Design optimization Sensitivity analysis Solar Collector Assembly Design Design requirements developed Key components analyzed and selected SCA size: 100 meters long (nominal) Mirror type / reflectivity Heat collecting elements (receivers) Frame type / stiffness, alignment, etc. Drive assembly / tracking system Structural / Mechanical Analyses Thermal loads Wind loads Alignment Solar Collector design / assembly drawings Short specifications for components
32. Solar Field Technical Activities (continued) Heat Transfer Fluid System Design Basic pipe routing, pipe sizing, pump head calculations Stress analysis / expansion loop design Expansion tank volume Process Flow Diagrams General Arrangement â Solar Field Addressed significant grading & drainage challenges Pylons & Foundations Spacing for Roadways, Mirror-Washing
33. Full Scale Prototype Developed: SolSTES SolSTES (Solar System Test and Evaluation Site) is a 100M Solar Collector Assembly installed at the LM MS2 facility in Moorestown NJ Commissioned April 2009 SolSTES was developed to provide risk reduction for: Validate component level performance Validation of system level performance Integration / constructability Alignment tolerances SolSTES Prototype Provides Risk Reduction
35. Lockheed Martin as a Solar Field Provider Experience & Innovation Full Scale Solar Collector Assembly Experience / Prototype Advanced Performance Modeling Capabilities Requirements-Driven SCA Design |and Component Selection 6ÎŁ SCA Assembly Analysis Supplier Evaluations Results-Driven Innovation World-Class Systems Engineering Commitment to Research & Development in Renewable Energy LM has mature understanding of Solar Field Design Lockheed Martin Proprietary Information
43. Streamline NEPA EIS/EA process for projects on BLM land and or projects with DOE loan guaranteesDrives Projects Closes Projects Federal Economic Incentives are Needed to Drive Utility Scale Projects
44. Conclusion Energy Independence is a key national security driver for the US and our Allies Lockheed Martin has a diverse portfolio in RE activities Keenly poised to execute utility scale solar power with existing technology and new/innovative technology insertion Robust federal support and legislation is needed to drive renewable energy markets Lockheed Martin Proprietary Information