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SMALL-SCALE RADIAL INFLOW TURBINE FOR WHR ORC

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SMALL-SCALE RADIAL INFLOW TURBINE FOR WHR ORC ( small-scale-radial-inflow-turbine-for-whr-orc )

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CHAPTER 3: Methodology for Developing Radial Inflow Turbine (RIT) on an IntelĀ® CPU core i7 - 4790@ 3.60GHz with 32GB RAM. Figure 3-16 outlines the details of the computational fluid domains for the nozzle and rotor blades. As can be seen in this figure the inlet and exit fluid domains are extended about one and half axial chord length of nozzle and rotor respectively in order to improve the numerical stabilization of the solution as suggested in (de Souza et al. 2011). Figure 3-16 Computational fluid domains for nozzle and rotor 3.6.3.2. Grid sensitivity analysis Grid independence study was carried out for the initial turbine stage that was created based on the mean-line modelling data and the specified grid size was fixed in following sections for further CFD analyses. Six main decision parameters were included in these studies with the main attention to the stage efficiency, Y+ and CPU time. The mesh resolution was increased by adding more elements in the hub-to-tip and blade-to-blade 89 | P a g e

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