Measurement of very small flow rates for applications as calibration of gas flow meters, looking for licensees

Details
Measurement of very small flow rates for applications as calibration of gas flow meters, looking for licensees
TODE20201016005
A German research institute has developed a measurement device for the calibration of smallest flow rates (<0.1 ml/min). A piston system for volumetric flow determination is set up, where a liquid with low vapor pressure can be introduced above the seal of the vertically moving piston. This new method for the calibration of gas flow meters reduces the uncertainty of the calibration. The research institute is searching for licensees.
A German research institute active in metrology has developed a measurement system for the determination of very small flow rates for the calibration of gas flow meters. For the calibration of smallest flow rates (<0.1 ml/min), a piston system for volumetric flow determination is set up, where a liquid with low vapor pressure can be introduced above the seal of the vertically moving piston.
The uncertainties usually arising from thermal input during this measuring process are minimized. An optical channel (yellow in the picture) enables the detection of leaks in the system by detecting the liquid level in two inspection windows. This new method for the calibration of gas flow meters reduces the uncertainty of the calibration.
The method uses a vertically mounted piston system to measure an unknown or generate a given flow. A liquid is fed into the annular gap between piston and housing via an inlet. This enables the automatic monitoring of the liquid for bubbles and an automatic output of a warning message via optical inspection in case of bubble detection. The thermal influences are minimized by the generation of smallest volume flows and leaks are detected by an optical measuring device. Thus, a lower measurement uncertainty is possible, especially when generating or measuring small flow rates, for example less than 1 ml per minute.
The economic aspect of the new sealing concept is the reduction of thermal influences on the calibration results. In addition, it is conceivable to use it for measuring the parasitic gas volumes that can penetrate piston seals. The described method can be used in calibration laboratories, high-precision measurements in laboratory technology as well as by manufacturers of flow measurement devices.
The research institute is searching for international licensees to increase third- party funding.
The system leads to the following advantages. 
-	Measurement of smallest flows are enabled
-	Reduction of thermal inputs
-	Detection of leaks is enabled
Available for demonstration
: Patent(s) applied for but not yet granted
Patent applied in Germany
Other
Attachments
FileType
piston

Keywords
09001006 Optical material testing
09001007 Optical Technology related to measurements
09001008 Other Non Destructive Testing
09006001 Quality Standards
09006002 Technical Standards
08002002 Industrial measurement and sensing equipment
08002003 Process control equipment and systems
09008002 Water, sewerage, chemical and solid waste treatment plants
09008003 Gas transmission and distribution
C.26.5.1 Manufacture of instruments and appliances for measuring, testing and navigation
M.72.1.9 Other research and experimental development on natural sciences and engineering
Partner Sought
The research institute is searching for international licensees to increase third-party funding. Targeted industrial partners are calibration laboratories, manufacturers of high-precision measurement equipment for laboratory applications as well as manufacturers of flow measurement devices interested in the commercial exploitation of the technology.
>500
>500 MNE
251-500
SME <10
SME 11-50
SME 51-250
License agreement
Client
R&D Institution
1887
No
English
German
Germany
Enterprise Europe Network Contact
Contact Person: Nataly Shved
+380 99 446 09 06
nataly.shved@innov-tec.com.ua

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