Microturbine and Thermoelectric Generator Combined System: A Case Study

J Nanosci Nanotechnol. 2017 Mar;17(3):1601-607. doi: 10.1166/jnn.2017.13734.

Abstract

Waste heat recovery is one of the suitable industrial applications of thermoelectrics. Thermoelectric generators (TEG) are used, commonly, only for low-mid size power generation systems. The low efficiency of thermoelectric modules generally does not encourage their combination with high power and temperature sources, such as gas turbines. Nevertheless, the particular features of thermoelectric technology (no moving parts, scalability, reliability, low maintenance costs) are attractive for many applications. In this work, the feasibility of the integration of a TE generator into a cogeneration system is evaluated. The cogeneration system consists of a microturbine and heat exchangers for the production of electrical and thermal energy. The aim is to improve electric power generation by using TE modules and the “free” thermal energy supplied by the cogeneration system, through the exhaust pipe of the microturbine. Three different solutions for waste heat recovery from the exhausts gas are evaluated, from the fluid dynamics and heat transfer point of view, to find out a suitable design strategy for a combined power generation system.

Keywords: Thermoelectric Generator; Waste Heat Recovery; Micro Gas Turbine; CFD Simulation.

Publication types

  • Research Support, Non-U.S. Gov't