Current research projects

Image Investigation according to DIN EN ISO 14903
Image Calibration leak for the water bath leak test
Image Hybrid- Fluid for CO2-Sublimation Cycle
Image Innovative Manufacturing Technologies for Cryosorption Systems
Image Reducing the filling quantity
Image Preformance measurements of heat exchangers
Image Low temperature – test facilities
Image Low noise and non metallic liquid-helium cryostat
Image Testzentrum PLWP at ILK Dresden
Image Reduction of primary noise sources of fans
Image 3D - Air flow sensor
Image Electrical components in refrigeration circuits
Image Industry 4.0 membrane heat and mass exchanger (i-MWÜ4.0)
Image Influenced melting point of water by magnetic field
Image IO-Scan - Integral measuring optical scanning method
Image Corrosion inhibitor for ammonia absorption systems

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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

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Further Projects

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

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

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Intelligent innovative power supply for superconducting coils

Compact, powerful power supply with 4-quadrant converter

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Laseroptical measurement

PIV and LDA / PDA

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Multifunctional electronic modules for cryogenic applications

Electronic with less wiring effort - more than 100 sensors via one feedthrough

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Certifiable connection types in cryogenics

Detachable and permanent connections, adhesive bond / form closure / force closure