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CHAPTER 5: Mean-line Modelling and Optimization of Organic RIT and Integration with Cycle Analysis Programme presents the contribution of the rotor aerodynamic losses at the optimized conditions obtained by the ORC-RIT model. The proportion of the losses is almost similar for all fluids with the tip clearance and secondary losses having the highest contribution, varying from 42% to 59% and 19% to 39% respectively. The large tip clearance loss was due to the large density (small specific volume) of organic fluids at the turbine inlet and due to the low mass flow rate which resulted in small inlet blade height (b4). At such conditions the running clearance became a large portion of the inlet blade height which explains the large tip clearance contribution. Moreover, the large passage turning obtained from high β4,blade and β5,tip (refer to Table 5-8) is responsible for the considerable contribution of secondary loss in reducing the turbine efficiency. The thermodynamic properties and ORC state points obtained by the ORC-RIT model at optimized conditions for all investigated fluids are presented on the temperature–entropy diagram in Figure 5-19. Figure 5-18 Contribution of the rotor aerodynamic losses for all fluids at the optimized conditions 196 | P a g ePDF Image | SMALL-SCALE RADIAL INFLOW TURBINE FOR WHR ORC
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