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Schedule The STEP project was officially launched in March 2017, and is a six-year effort with three distinct budget periods. BUDGET PERIOD 1 (ENDS OCTOBER 2018) Detailed Facility and Equipment Design (25 months) • System analysis, P&IDs, Component Specs • Design major equipment • Procure heat source, cooling tower and long- lead items • Materials and seal tests • Start site construction BUDGET PERIOD 2 (ENDS JANUARY 2021) Fabrication and Construction (27 months) • Complete site construction and civil works • Fabrication and installation of major equipment • Commissioning and simple-cycle test BUDGET PERIOD 3 (ENDS SEPTEMBER 2022) Facility Operation and Testing (20 months) • Facility reconfiguration • Test recompression cycle Project Status Technology Development Tasks The project includes several technology development tasks involving the turbine, turbine stop valve, and materials testing. A conceptual schematic of the 14 MWe (gross) sCO2 turbine, jointly designed by SwRI and GE, is shown in Figure 3. This effort leverages an existing U.S. DOE-funded SunShot program in which SwRI and GE have fabricated and are currently testing a similar turbine. This turbine is also designed for a turbine inlet temperature of 700°C but will be operated at reduced flow conditions, limiting power output to 1 MWe. The STEP turbine will offer improvements over the SunShot turbine, including: increased casing and rotor life (100,000 hrs vs 20,000 hrs), shear ring retention rather than bolts, a design for couplings on both shaft ends, and improved aero performance with increased volute flow area. Also, upgrades to hot gas seals and thermal management local to seals will be implemented based upon lessons learned from the SunShot effort and related supporting projects. Current STEP turbine design activities are focused on torsional train dynamics, rotor flowpath preliminary design; and flowpath mechanical and aeromechanical integrity. Figure 3. Conceptual design of 14 MWe STEP sCO2 turbine Configuration 5PDF Image | 10 MWe Supercritical Carbon Dioxide sCO2 Pilot Power Plant
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