Fluid Mechanics Flashcards
7 cards from real BME practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.
Read the first 7 Fluid Mechanics flashcards as text
The Moody diagram relates the Darcy friction factor to:
Answer: Reynolds number and relative pipe roughness
The Moody diagram provides friction factor f as a function of Reynolds number Re and relative roughness ε/D.
For an ideal (inviscid, incompressible) fluid, Bernoulli's equation assumes which condition along a streamline?
Answer: Steady, incompressible, inviscid flow with no shaft work
Bernoulli's equation applies along a streamline for steady, incompressible, inviscid flow with no external work done.
Which non-dimensional parameter characterizes the ratio of buoyancy forces to viscous forces in natural convection flows?
Answer: Grashof number
The Grashof number (Gr = gβΔTL³/ν²) represents buoyancy to viscous force ratio in natural convection.
A hydraulic jump occurs in open channel flow when the flow transitions from:
Answer: Supercritical to subcritical
A hydraulic jump is an abrupt transition from supercritical (Fr > 1) to subcritical (Fr < 1) flow with significant energy loss.
The stream function ψ is defined such that lines of constant ψ represent:
Answer: Streamlines of the flow
The stream function ψ is defined so that ∂ψ/∂y = u and ∂ψ/∂x = −v, making iso-ψ lines identical to streamlines.
Minor losses in pipe systems (bends, fittings, valves) are commonly expressed as:
Answer: h_m = K(V²/2g) where K is a loss coefficient
Minor losses are expressed as h_m = K·V²/(2g), where K is the dimensionless loss coefficient specific to each fitting.
In a centrifugal pump, the specific speed Ns is used to:
Answer: Classify pump geometry and select the optimal impeller type
Specific speed classifies pump geometry: low Ns favors radial-flow (centrifugal) designs, high Ns favors axial-flow designs.