Current research projects

Image Brine (water)-water heat pump
Image Cryogenic liquid piston pumps for cold liquefied gases like LIN, LOX, LHe, LH2, LNG, LAr
Image Range of services laboratory analyses
Image Hydrogen and methane testing field at the ILK
Image High temperature heat pump
Image Service offer for Leak Detection and Tightness Test
Image Reduction of primary noise sources of fans
Image Innovative Manufacturing Technologies for Cryosorption Systems
Image Development of test methods and test rigs for stationary integrated refrigeration units
Image Laseroptical measurement
Image Measurements on ceiling mounted cooling systems
Image Software for technical building equipment
Image Overall System Optimization of Refrigeration Plant Systems for Energy Transition and Climate Protection
Image Cryostats, Non-Metallic and Metallic
Image High Capacity Pulse Tube Cooler
Image Air-flow test rig for fan characteristic measurement

You are here:  Home /  Research and Development


IO-Scan - Integral measuring optical scanning method

INNO-KOM

02/2022 - 07/2024

M.Sc. Rebekka Grüttner

+49-351-4081-5314

IO-Scan

Development of a photometric measurement method for determining the air exchange rate in indoor areas

Motivation

  • Cost-effective, real-time assessment of indoor air quality in the form of air exchange rates
  • Verify and optimise the effectiveness of ventilation systems in occupied areas
  • Ability to evaluate aerosol reduction through the interaction of window ventilation, building ventilation system and mobile room air cleaners

Project Objective

  • Self-calibrating measuring system
  • Deviation from previous trace gas measurements should be within 10%.
  • Real-time results can detect and evaluate the influence of changes in the ventilation system during the measurement process
  • Intended measurement depth in the room: 1 m to 50 m

Solution Approach

  • The introduction of mist aerosols into the room air influences the light transmittance to be measured.
  • Transmittance of an air-aerosol mixture and use of measured transmittance to determine air exchange rate
  • Integral real-time optical measurement over individual indoor distances

Your Request

Further Projects - Research and Development