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Optimised Radial Turbine Design D1.8

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Optimised Radial Turbine Design D1.8 ( optimised-radial-turbine-design-d18 )

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SUMMARY: This report presents the design of a radial turbine to match the requirements of a 5 kWe solar powered micro gas turbine. This report is part of City University’s responsibility to design an optimised solar powered microgas turbine for the OMSoP (Optimised Microturbine Solar Power system) project. A meanline design has been used to obtain the main geometry parameters for the turbine parts. The results were used to generate the three-dimensional geometry of the parts. The geometry was then tested using Computational Fluid Dynamics (CFD), where some modifications on the preliminary design were introduced to satisfy the design requirements. After reaching an aerodynamically mature design, the geometry was tested using Finite Element Analysis (FEA) tools. This step included modifying the geometry to ensure the structural integrity during operation. The turbine design aimed to obtain a high efficiency to meet the target requirements of the Concentrated Solar Power (CSP) system. The turbine’s design point rotational speed is 130,000 rpm, stagnation inlet temperature and pressure are 800 C°, 2.92 bar respectively and mass flow rate is 0.08 kg/s. The turbine rotor has 13 blades with inlet and exit diameters 73.4mm and 42.2 mm. 15 uncambered nozzle guide vanes have been designed as they are easy to manufacture and provide a good performance. The efficiency of the designed turbine has reached 83.8% at the design point. Computations were performed to ensure that the turbine is able to run efficiently and withstand temperatures if the receiver was able to reach turbine inlet temperature of 900 oC. The presented turbine design is specifically for the demonstration plant, but the developed methodology will be used to design a turbine for the final optimised system. i

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