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An optimization framework development for organic rankine cycle driven by waste heat recovery: Based on the radial-inflow turbine

Wenyu Li, Xiang Ling

2022Case Studies in Thermal Engineering15 citationsDOIOpen Access PDF

Abstract

As the crucial component of the ORC-WHR system, the turbine not only directly influences the system's thermodynamic performance but also dominates the investment cost of ORC-WHR components. Therefore, making the turbine standardization or serialization is a promising way to reduce ORC-WHR system investment costs and promote its application. In this paper, a novel optimization framework for the ORC-WHR system is proposed which is based on the serialized turbine database, which highlights the matching degree between heat sources and turbines. The approach for constructing the turbine database was investigated firstly, then several case studies were conducted to illustrate the effectiveness and innovation of the proposed optimization framework. This research demonstrates that it is an effective way to realize ORC-WHR system optimization through optimally interpolating in a multi-dimensional space based on database characteristic parameters including FluidORC, r4, Ma4, and R. This paper presents a totally new optimization idea for the ORC-WHR system and gives contributions to promoting its application.

Topics & Concepts

Organic Rankine cycleTurbineSerializationComputer scienceComponent (thermodynamics)Process engineeringWaste heatEnvironmental scienceMathematical optimizationMechanical engineeringEngineeringHeat exchangerMathematicsThermodynamicsOperating systemPhysicsThermodynamic and Exergetic Analyses of Power and Cooling SystemsAdvanced Thermodynamics and Statistical MechanicsAdvanced Thermodynamic Systems and Engines
An optimization framework development for organic rankine cycle driven by waste heat recovery: Based on the radial-inflow turbine | Litcius