Current research projects

Image Software modules
Image Cold meter
Image Certifiable connection types in cryogenics
Image IO-Scan - Integral measuring optical scanning method
Image Testing of mobile leak detectors according to DIN EN 14624
Image Investigation of coolants
Image Computational fluid dynamics CFD
Image Energy efficiency consulting - cogeneration systems
Image Helium extraction from natural gas
Image Performance tests of refrigerant compressors
Image Reduction of primary noise sources of fans
Image Testzentrum PLWP at ILK Dresden
Image Development of test methods and test rigs for stationary integrated refrigeration units
Image Swirl-free on the move...
Image Thermostatic Expansion Valves
Image Reducing the filling quantity

You are here:   /  Home


Pulse-Tube-Refrigerator with sealed compressor

Federal Ministry of Economics and Energy

Dipl.-Ing. Gunar Schroeder

+49-351-4081-5129

for mobil use in the hydrogen technology

Within the research project "Mobile single-stage pulse tube cooler with hermetic compressor drive" (project number MF 130012), a compact, robust and low-maintenance cryocooler was developed.
Possible applications for this cryocooler, e.g.,

  • Cooling of mobile high-pressure tanks for storing fuels in cryogenic liquid or supercritical state (e. g. H2 – cryogenic under high pressure)
  • mobile cooling applications < –40°C in medical technology, transport of organic material or samples

The system has a simple and cost-effective design with the following advantages:

  • Mobile use, supply voltage 12 V or 24 V, air-cooled
  • Supply of cryogenic temperatures in the range 60...120 K
  • Low maintenance and long-life, no moving parts in the cold part
  • Programmable temperature curves via microcontroller-based control
  • Low power consumption, in the range of 500 W
  • Low space requirement, arrangement can be adapted
  • Lower costs control through extensive use of commercial components

Figure 1 shows the experimental setup of the cryocooler in a specially adapted orifice double inlet configuration. With the use of a special valve control, 2 W cooling capacity at 77 K and 5 W at 90 K could be achieved. The lowest temperature reached with this single-stage configuration was 68 K. The temperature stability of the system was validated in a test lasting 100 h, see figure 2. In further investigations with a specially adapted compressor, even lower temperatures are to be achieved, down to 40 K.

We are looking for industrial partners for adaptations for special application purposes or possible further developments. Conceivable are, for example, a compact system suitable for use in motor vehicles in a functional housing with the necessary interfaces or a further development of the current cooler to achieve higher cooling capacity, lower temperatures and higher efficiency.


Your Request

Further Projects

Image

Software for technical building equipment

Design cooling load and energetic annual simulation (VDI 2078, VDI 6007, VDI 6020)

Image

Measurements on ceiling mounted cooling systems

Comparative performance measurement

Image

Micro fluidic expansion valve

for increasing of the efficiency of small and compact cooling units

Image

Solar Cooling

Solar Cooling with Photovoltaic

Image

Hydrogen and methane testing field at the ILK

Simultaneously pressures up to 1,000 bar, temperatures down to –253°C