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Control Volume & Mass Conservation – Aerospace Engineering Notes (Fluid Dynamics PDF)

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These notes provide a concise and exam-focused overview of Control Volume analysis and Mass Conservation in fluid dynamics — essential for aerospace and mechanical engineering courses. Topics covered: Dimensional flows and flow rate relationships Incompressible vs. compressible flows explained Mass conservation equations with derivations Momentum flow rate and momentum equation Worked example: force required to stop a moving plate Why these notes are valuable: All core principles condensed into a clear, structured PDF Includes key formulas with variables explained Covers both theory and practical applications Perfect for revision, assignments, or tutorials Who it’s for: Aerospace Engineering undergraduates Mechanical Engineering students A-Level Physics students tackling fluid mechanics Tutors seeking a quick teaching reference Details: Format: PDF (ready for digital use or printing) Structure: Equations + explanations + example problem These notes make it easy to grasp control volume concepts and apply mass conservation principles — a key foundation for fluid dynamics and aerodynamics.

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Uploaded on
August 22, 2025
Number of pages
2
Written in
2024/2025
Type
Class notes
Professor(s)
Dr humberto medina
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DIMENSIONAL FLOWS

ow
i V01h AV

in MaEfow PAV pv
PAV RAzVz




Incompressable Flows
Densityremainsconstant with time andposition lessthan 5 change
Flows of liquid or lowspeedgases v 4100 m s
P2
AV AV conservation
of mass
compressable Flows
Densitychanges witheither
timeor position
Highspeed gases v 100ms
P
PAV PA V conservation of mass




MOMENTUM EQUATION

Momentum
flow rate flux MV PAV

'F mV mV PAzVz PAV
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