Initiative of the U.S.-India Energy Dialogue

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Initiative of the U.S.-India Energy Dialogue ( initiative-us-india-energy-dialogue )

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Renewable energy, with an installed capacity of 31 GW, currently forms 12.5 percent of India's total power generation. The GOI has embarked upon an ambitious target to reach 53 GW of renewable energy installed capacity by 2017. The U.S.-India collaboration on renewable energy is focusing on research and development of innovative technologies, institutional capacities at the national and state level, pilot projects, business models for off-grid renewable energy, and linkages between U.S. and Indian companies for knowledge sharing. PACE-R Renewable Energy Consortia Solar Energy Research Institute for India and the U.S. (SERIIUS) Co-led by the Indian Institute of Science at Bangalore (IISc) and the National Renewable Energy Laboratory (NREL), SERIIUS focuses on accelerating the development of solar technologies by lowering the cost-per-watt of photovoltaic (PV) and concentrated solar power (CSP) through a bi-national consortium. Via cost share from SunEdison and Washington University – St. Louis, the program has also funded 13 graduate and early career bi-national exchanges. Technical progress under SERIIUS includes: Sustainable Photovoltaic: The program has completed an initial study of the importance of dust and soiling problems in India and developed a coatings-based mitigation strategy. In addition, it has developed new materials for organic and dye solar cells based on computational materials design. It has also completed an initial database for reliability vs. climate across India to provide a basic understanding of failure modes and produce mitigation strategies. New contact and barrier layers have been developed for better PV cell reliability and performance. Similarly, the program has developed a new diagnostic electroluminescence technique as a tool to evaluate solar cell performance. Concentrated Solar Power: The program has worked on the optimization of Organic Rankine Cycle (ORC) and Supercritical Brayton CO2-based Cycle on two mid-scale systems for India and the U.S. It has completed the technical design of a research (laboratory-scale) supercritical CO2 test loop for the closed Brayton Cycle. Other results include: computational design of a tubular serpentine receiver; design of a laboratory-scale molten-salt-loop system for high temperature storage in Brayton CO2 cycles; optimization of compressor designs for small-scale ORC; and development of a (Cu-Sn)- based novel hemispherical highly reflective intermetallic mirror material with > 93 percent reflectivity and a much lower cost. Solar Energy Integration: The program has developed a roadmap for solar power in India until 2032. It has created a GIS-enabled tool for resource potential assessment for Karnataka as an illustration and developed a methodology to assess the potential of both concentrated solar power and PV. In addition, it generated open-source computational models with an intuitive graphic interface for use in assessment of Parabolic Trough Technology. A report by CSTEP on Direct Normal Irradiance Data U.S.-India Partnership to Advance Clean Energy (PACE) 8 Renewable Energy Credit: CSTEP

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