Discharge coefficients of CFVN predicted for high Reynolds numbers based on Low-Re-calibration

B. Mickan
Abstract:
In 2016, PTB introduced a function for the representation of the discharge coefficient cD of critical flow venturi nozzles (CFVN) (versus the Reynolds number Re) what covers the operating range with laminar boundary layers and with turbulent boundary layers as well. It contains the parameters a for the impact of the core flow, blam for the Re-dependency in case of laminar and bturb in case of turbulent boundary layers. These parameters are not independent to each other but have the fixed relation of bturb = 0.003654 b lam 1.736.
Furthermore, the parameter a and the parameter blam are both direct functions of the local curvature radius Rc,throat of the nozzle at the throat. These relationships to Rc,throat are described by theoretical models. Consequently, the overall dependency of the discharge coefficient cD on Reynolds number Re can be derived from only one parameter.
The paper describes how the relationships mentioned above can be used to extrapolate the calibration values of a CFVN determined with atmospheric air to high pressure gas flow applications covering a Reynolds range of about 1:60. It is shown in detail by examples and the reliability is demonstrated by comparison data for low and high pressure of 33 nozzles. Finally, aspects of preconditions for such extrapolation and uncertainties will be discussed.
Download:
IMEKO-TC9-2019-038.pdf
DOI:
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Event details
IMEKO TC:
TC9
Event name:
FLOMEKO 2019
Title:

18th International Flow Measurement Conference 2019

Place:
Lisbon, PORTUGAL
Time:
26 June 2019 - 28 June 2019