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Principles of Technology Waxahachie High School Ratein Fluid Systems PIC Chapter 3.2 Ratein Fluid Systems PIC Chapter 3.2 PT TEKS.

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Presentation on theme: "Principles of Technology Waxahachie High School Ratein Fluid Systems PIC Chapter 3.2 Ratein Fluid Systems PIC Chapter 3.2 PT TEKS."— Presentation transcript:

1 Principles of Technology Waxahachie High School Ratein Fluid Systems PIC Chapter 3.2 Ratein Fluid Systems PIC Chapter 3.2 PT TEKS

2 Rate in Fluid Systems : Objectives:   Define volume flow rate   Solve problems using the volume flow rate equation   Define mass flow rate   Solve problems using the mass flow rate equation   Explain how volume and mass flow rates can be measured : Objectives:   Define volume flow rate   Solve problems using the volume flow rate equation   Define mass flow rate   Solve problems using the mass flow rate equation   Explain how volume and mass flow rates can be measured

3 Rates in fluid systems describe the motion of liquids and gases. Fluids in motion have speed and acceleration; however we use two different rates to describe how quickly fluids flow: volume flow rate and mass flow rate. Rate in Fluid Systems

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8 Methods for measuring volume and mass flow rates vary, depending on the situation. The simplest, most direct method to find average flow rate is to collect fluid and measure the amount of fluid collected over time. Rate in Fluid Systems

9 Flowmeters measure the average flow rate of fluids by measuring pressure and velocity and calculating the flow rate. Flowmeters use indirect methods to measure flow rates so that they do not interrupt the flow. Rate in Fluid Systems

10 Volume flow rate equation using speed = area x speed Mass flow rate equation using speed = density x area x speed To find cross sectional area of a pipe use this equation = pi x r 2 Rate in Fluid Systems

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