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Flow meters measure the volumetric flow rate in a pipeline. Most meters are based on deriving a signal from the fluid flow and calibrating the signal against the volumetric flow rate. The calibration is done in fully-developed flow, and the same state of flow must exist at the meter’s position when it is in practical use. This book addresses two major fluid mechanical problems in flow metering: the analysis of signal generation in turbulent pipe flow, which explains the function of the meter beyond a simple calibration, and the possible use of a meter in non-developed flows. These problems are investigated with reference to, and examples from, a variety of meters, e.g. ultrasound cross-correlation meters, vortex meters, and turbine meters. Studying these problems requires consideration of specific phenomena in turbulent non-developed pipe flow, as caused by installations, and finding special solutions with signal processing, both of which are included in the book.
Flow meters. --- Fluid mechanics. --- Pipelines --- Hydrodynamics. --- Hydromechanics --- Continuum mechanics --- Hydrodynamics --- Current meters (Fluid dynamics) --- Flow measurement --- Flowmeters --- Fluid meters --- Meters, Flow --- Hydraulic engineering --- Stream-gaging stations --- Instruments --- Hydraulic engineering. --- Mechanical engineering. --- Engineering Fluid Dynamics. --- Measurement Science and Instrumentation. --- Classical and Continuum Physics. --- Mechanical Engineering. --- Engineering, Mechanical --- Engineering --- Machinery --- Steam engineering --- Engineering, Hydraulic --- Fluid mechanics --- Hydraulics --- Shore protection --- Physical measurements. --- Measurement . --- Continuum physics. --- Classical field theory --- Continuum physics --- Physics --- Measuring --- Mensuration --- Mathematics --- Technology --- Metrology --- Physical measurements --- Measurements, Physical --- Mathematical physics --- Measurement
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Flow visualization. --- OPTICAL METHODS --- FLUID FLOW --- Monograph --- Fluid dynamics. --- Optical measurements. --- Flow visualization
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Flow meters measure the volumetric flow rate in a pipeline. Most meters are based on deriving a signal from the fluid flow and calibrating the signal against the volumetric flow rate. The calibration is done in fully-developed flow, and the same state of flow must exist at the meter's position when it is in practical use. This book addresses two major fluid mechanical problems in flow metering: the analysis of signal generation in turbulent pipe flow, which explains the function of the meter beyond a simple calibration, and the possible use of a meter in non-developed flows. These problems are investigated with reference to, and examples from, a variety of meters, e.g. ultrasound cross-correlation meters, vortex meters, and turbine meters. Studying these problems requires consideration of specific phenomena in turbulent non-developed pipe flow, as caused by installations, and finding special solutions with signal processing, both of which are included in the book.
Measuring methods in physics --- Classical mechanics. Field theory --- Fluid mechanics --- Thermodynamics --- Engineering sciences. Technology --- Chemical technology --- meetmethoden --- thermodynamica --- ingenieurswetenschappen --- mechanica --- vloeistoffen
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Measuring methods in physics --- Classical mechanics. Field theory --- Fluid mechanics --- Thermodynamics --- Engineering sciences. Technology --- Chemical technology --- meetmethoden --- thermodynamica --- ingenieurswetenschappen --- mechanica --- vloeistoffen
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