Computational and experimental study of pressure losses in duct transitions
Guohui Gan, Saffa Riffat
Abstract
Guohui Gan, Saffa Riffat
Abstract
This paper is concerned with numerical prediction and experimental measurement of air flow and pressure distribution in rectangular ducts with transitions. The constant-injection tracer-gas technique was used to measure mean air velocity in the ducts. Pressure distribution along the ducts was measured using static pressure tappings. The pressure loss coefficient was calculated from the measured pressure loss and air velocity. Computational fluid dynamics was used to predict air flow and pressure distribution in the ducts. The predicted pressure loss coefficient was in good agreement with experimental results for a duct with a contraction.
OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This paper is concerned with numerical prediction and experimental measurement of air flow and pressure distribution in rectangular ducts with transitions. The constant-injection tracer-gas technique was used to measure mean air velocity in the ducts. Pressure distribution along the ducts was measured using static pressure tappings. The pressure loss coefficient was calculated from the measured pressure loss and air velocity. Computational fluid dynamics was used to predict air flow and pressure distribution in the ducts. The predicted pressure loss coefficient was in good agreement with experimental results for a duct with a contraction.
Key concepts: Duct (anatomy), Mechanics, Pressure coefficient, Computational fluid dynamics, Pressure drop, Static pressure, Flow coefficient, Airflow