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ME 322: Instrumentation Lecture 16 February 25, 2015 Professor Miles Greiner Lab 6 calculations (Excel demo)
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Announcements/Reminders HW 6 due Friday Career Fair, Tomorrow, February 26, 2015 – Internships – Prepare for permanent employment next year – www.unr.edu/engineering/careerfair www.unr.edu/engineering/careerfair – Differential Fees pay for this
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Lab 6 Air Volume Flow Rate and Centerline Speed in a Wind Tunnel Plexiglas Tube and Schedule-40 Pipe have different diameters Control flow rate using a variable speed blower – Cover blower exit for very low speeds For a range of flow rates, measure – Volume flow Q rate using a Presso Venturi Tube (in pipe) – Centerline speed V C using a Pitot-Static Tube (in Plexiglas tube) For both measure pressures difference using calibrated transmitters/digital multimeters Both V C and Q increase with blower flow rate – Is V S < V C < V P ?
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Instrument Schematic D Tube D Pipe P PGPG PVPV Static Total + + - - IVIV IPIP IGIG + - Variable Speed Blower Pipe Plexiglas Tube Pitot-Static Probe V C Venturi Tube Q Atm 40 in WC 3 in WC 40 in WC Barometer P ATM T ATM
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Summary
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During Experiment
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Consistency Check For a given volume flow rate Q – V S = Q/A – V P = 2V S What area should we use? – A Pipe or A Tube
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Measured Results Determine speed and flow rate uncertainty for a range of blower speeds
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Demonstrate Excel Calculations Lab 6 Sample Data – http://wolfweb.unr.edu/homepage/greiner/teaching/ MECH322Instrumentation/Labs/Lab%2006%20Fl uid%20Flow/Lab%20Index.htm http://wolfweb.unr.edu/homepage/greiner/teaching/ MECH322Instrumentation/Labs/Lab%2006%20Fl uid%20Flow/Lab%20Index.htm Values and uncertainties Pressure Units Error Bars
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Pressure Transmitter Uncertainty
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Static Pressure
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Static Pressure Uncertainty
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Transmitter Pressures 3” or 40” WC FSWρWρ Pitot3” WC1.9 Pa Venturi and Gage 40” WC25 Pa
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Gas Pressure and Density
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