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 1: Introduction 1.2. Objectives and scope As shown in section 1.1 while they are critical component of the ORC, RITs have received relatively little attention from the ORC community. Together ORC and RIT when utilizing low- to-medium grade waste heat sources offer a sustainable solution for energy efficiency improvements with great potential in various applications. The present research aims at investigation of different strategies for development and optimization of highly efficient small- scale RIT as the expander of small-scale ORC systems with the power capacities of less than 5kWE and has the following objectives:  Developing and validating a generalized methodology for design and performance prediction of small-scale RITs for DPG applications encompassing detailed one- dimensional modelling followed by the aerodynamic analysis using computational fluid dynamics (CFD) and structural analysis using finite element analysis (FEA). Then conducting the experimental studies for validating the proposed methodology.  Extending the developed one-dimensional simulation code for design and performance prediction of organic RITs for the ORC based on real-gas formulation and intergrating an optimization algorithm for maximizing the RIT performance. Moreover, integrating the one-dimensional modelling of RIT with modelling of the ORC to replace the constant efficiency assumption that is used in majority of the literature studies for more realistic cycle analysis.  Establishing new correlations for performance and size prediction of ORC RIT using the developed simulation code that can be integrated with the ORC general analysis code for accurate efficiency prediction of the RIT without the need for performing complete RIT design procedure. 7|Page

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