Solar Energy Technologies Program

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

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IV System Integration and Analysis 11 Power-Tower System Simulation and Analysis • Develop/update detailed 5-year-plan metrics, 10-year and 25-year goals; F develop metric tracking for systems-integrated approach. • Identify novel power-tower designs and market opportunities • Evaluate impact of atmospheric attenuation limits using updated resource assessment data and analyze alternative approaches F C 12 Tools for Design Integration • Update and improve power tower design tools A,C • Develop an integrated analysis tool • Validate models • Continually update and refine models with new data All All All 13 Support Commercial-Plant Deployment Opportunities • Identify relevant markets and policy issues F • Test components to reduce risk • Provide technical support with project development, detailed design, construction, and operation • Evaluate hybrid operation and hardware required for solar/fossil integration 14 Monitor Commercial-Plant Performance • Support an active test and evaluation program • Collect data for model validation and improvement • Support analysis of lessons learned 4.2.5.3 Dish Technology Approach and Tasks E E,F A,C, F B,C,D All All To address the barriers facing the deployment of dish-Stirling systems that were identified in the preceding section of this plan, we will pursue the following tasks. The first-and-foremost activity for dish-Stirling systems is to better identify and quantify the markets and market requirements for these systems and to expand on existing models and develop new ones for dish-Stirling-system performance and cost. In parallel with this activity, we will continue to measure and improve on reliability and to develop robust components and advanced systems that will improve performance. The dish-Stirling tasks for the next 5 years are described in the following activities and table and the milestone chart of this section. I. Performing systems analysis. Systems analysis is needed to identify in more detail the markets and market requirements for dish systems in distributed generation, remote power, and, potentially (as identified by some system developers), in bulk-power markets. Emerging distributed-generation markets are not currently well understood or characterized, and the requirements of systems to be deployed in those markets are not known. Some of these markets will be on the “wholesale” side of the meter, having characteristics of utility-like power generation, and others will be on the “customer” side of the meter and command a higher value for the power they generate. In both cases, we need to know the size of the markets and their requirements for systems deployment. Existing models will be expanded and new ones developed for dish-Stirling systems. They will be used to evaluate the impact of R&D improvements and designs on the performance and cost of power, similar to the due-diligence activity that has been done for solar-trough and power-tower systems. Solar Energy Technologies Program Multi-Year Technical Plan 91

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