Current research projects

Image Optimizing HVAC operation with machine learning
Image Innovative Parahydrogen Generator Based on Magnets
Image Multifunctional electronic modules for cryogenic applications
Image Preformance measurements of heat exchangers
Image Test procedures for electrical components
Image Air-flow test rig for fan characteristic measurement
Image Electrical components in refrigeration circuits
Image Combined building and system simulation
Image Thermal engines
Image Calibration of Low Temperature Sensors
Image Ionocaloric cooling
Image Computational fluid dynamics CFD
Image Tensile and compression testing
Image Reduction of primary noise sources of fans
Image Innovative small helium liquefier
Image Brine (water)-water heat pump

You are here:   /  Home


Thermal engines

Industry

Dipl.-Ing. Gunar Schroeder

+49-351-4081-5129

Power Generation from Waste Heat

Principally every refrigeration process could also work as a power cycle. In this way an energy consuming machine which provides a temperature below the ambient temperature turns into a heat engine operating between the ambient and a higher temperature. In a first step cryogenic refrigeration cycles are used reversely as heat engines, as they can handle large temperature gradients.

Thermal engines similar to the Stirling cycles

In cooperation with FOX exhaust systems, the ILK Dresden has developed a waste heat recovery system. The thermal engine dedicated for the car exhaust gas system was now presented at the International Motor Show (IAA, 2011) in Frankfurt for the first time.

With the aid of a model the functionality was demonstrated impressively.

The prototype will deliver an electrical power of 2 kW, at an exhaust gas temperature between 300 and 500°C (570 to 930°F). Currently optimization work, mainly related to generator, is underway. The figure below shows the illustration of the thermal engine in an exhaust tract.

Thermal engines related to other thermodynamic cycles

With several industrial partners heat engines are under development, which operate according to the following thermodynamic cycles:

  • closed and open Joule process
  • valve less Ericsson process

Your Request

Further Projects

Image

Humidifier System for High-Purity Gases

Nafion - moisture transfer

Image

Behavior of multiphase cryogenic fluids

experimental und numerical investigations

Image

Innovative Parahydrogen Generator Based on Magnets

Magnetic Gas Separation of the Hydrogen Isomers

Image

Innovative cryogenic cooling system for the recondensation / liquefaction of technical gases up to 77 K

high performance efficiency, environmental friendliness, compactness, cost-effectiveness