Experimentalverificationofagasmeterchannel

Abstract
The Department of Power Engineering Equipment of the TUL has a PIV system suitable for measuring 2D and 3D velocity fields in fluids. The system is based on optical (non-contact) measurement methods, therefore the velocity fields in the measured area are not affected.The subject of the diploma thesis is the measurement of pressure loss and analysis of homogeneity of velocity fields in the inner channel of the gas meter model. The aim of the diploma thesis is to search for measuring methods suitable for measuring pressure loss and analysis of velocity fields in flow in channels, to design a measuring stand and to perform and evaluate measurements.Principles for elaboration:- Overview of measuring methods.- Description of the principles of measurement by the PIV method.- Experiment design.- Proposal of methodology for evaluation.- Preparation and realization of the experiment.- Evaluation of results.
The Department of Power Engineering Equipment of the TUL has a PIV system suitable for measuring 2D and 3D velocity fields in fluids. The system is based on optical (non-contact) measurement methods, therefore the velocity fields in the measured area are not affected.The subject of the diploma thesis is the measurement of pressure loss and analysis of homogeneity of velocity fields in the inner channel of the gas meter model. The aim of the diploma thesis is to search for measuring methods suitable for measuring pressure loss and analysis of velocity fields in flow in channels, to design a measuring stand and to perform and evaluate measurements.Principles for elaboration:- Overview of measuring methods.- Description of the principles of measurement by the PIV method.- Experiment design.- Proposal of methodology for evaluation.- Preparation and realization of the experiment.- Evaluation of results.
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Subject(s)
flow measurement, PIV, velocity, pressure, flow measurement, PIV, velocity, pressure
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