21.11
Flow measurement devices—such as orifice, nozzle, and Venturimeters—operate by narrowing the flow area. This increases fluid velocity and decreases pressure, enabling accurate flow rate measurement based on Bernoulli's principle.
Each device induces different pressure recovery and head loss characteristics. An orifice meter uses a plate with a hole that creates a significant pressure drop.
Non-ideal effects like area contraction and turbulence contribute to the head loss, so an orifice discharge coefficient adjusts the flow rate calculation for accuracy.
The nozzle meter, with a contoured design, reduces flow separation and turbulence, resulting in a higher discharge coefficient and less energy loss.
The nozzle discharge coefficient accounts for viscosity effects, with calculations depending on the pressure difference, nozzle area, fluid density, and diameter ratio.
The Venturimeter, the most accurate and efficient, has a streamlined design that minimizes head loss through smooth contraction and gradual expansion.
Its discharge coefficient accounts for viscosity and is influenced by factors like the diameter ratio and Reynolds number, maximizing accuracy and energy efficiency.
Bij het meten van debiet in pijpleidingen worden orifice-, nozzle- en venturimeters vaak gebruikt om de vloeistofstroomsnelheid te bepalen door het st…
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