Litcius/Paper detail

Thermal Flow Meter with Integrated Thermal Conductivity Sensor

Shirin Azadi Kenari, Remco J. Wiegerink, Henk‐Willem Veltkamp, Remco G.P. Sanders, Joost Conrad Lötters

2023Micromachines14 citationsDOIOpen Access PDF

Abstract

This paper presents a novel gas-independent thermal flow sensor chip featuring three calorimetric flow sensors for measuring flow profile and direction within a tube, along with a single-wire flow independent thermal conductivity sensor capable of identifying the gas type through a simple DC voltage measurement. All wires have the same dimensions of 2000 μm in length, 5 μm in width, and 1.2 μm in thickness. The design theory and COMSOL simulation are discussed and compared with the measurement results. The sensor’s efficacy is demonstrated with different gases, He, N2, Ar, and CO2, for thermal conductivity and thermal flow measurements. The sensor can accurately measure the thermal conductivity of various gases, including air, enabling correction of flow rate measurements based on the fluid type. The measured voltage from the thermal conductivity sensor for air corresponds to a calculated thermal conductivity of 0.02522 [W/m·K], with an error within 2.9%.

Topics & Concepts

Thermal conductivityThermal conductivity measurementMaterials scienceFlow measurementThermalVolumetric flow rateVoltageFlow (mathematics)Thermal mass flow meterMechanicsAnalytical Chemistry (journal)ThermodynamicsElectrical engineeringComposite materialChemistryMass flow meterPhysicsEngineeringChromatographyAdvanced Sensor Technologies ResearchHeat Transfer and Boiling StudiesHeat Transfer and Optimization