Volume Flow Rate: Open vs Closed Valves

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SUMMARY

The discussion focuses on the impact of valve states on volume flow rates in fluid dynamics. When a valve transitions from open to closed, it alters the distribution of flow rates among outlets. In the given scenario, with an inlet flow rate of 1 m³/s, each of the two outlets can indeed have a flow rate of 0.5 m³/s when the valve is open. This confirms the principle of conservation of mass in fluid systems, where the total inflow equals the total outflow.

PREREQUISITES
  • Understanding of fluid dynamics principles
  • Knowledge of volume flow rate calculations
  • Familiarity with valve operation and its effects on flow
  • Basic mathematical skills for flow rate distribution
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  • Research the Bernoulli equation and its applications in flow systems
  • Learn about the effects of valve types on flow rates
  • Study conservation of mass in fluid dynamics
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Engineers, fluid dynamics students, and professionals involved in system design and analysis of fluid flow in piping systems.

Bolter
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Homework Statement
See below
Relevant Equations
volume flow rate = vA
Made an attempt at this Q but I'm unsure on how to do part c) or if I had even done part a) and b) right

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What difference does it make to the volume flow rate equation when the valve goes from open to closed?

Any help would be appreciated! Thanks
 
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How can there be 1m3/s flowing in and 1m3/s going out of both outlets?
 
haruspex said:
How can there be 1m3/s flowing in and 1m3/s going out of both outlets?

So do I assume that the inlet has 1 m^3/s flowing in
and both outlets at the end have 0.5 m^3/s flowing out
 
Bolter said:
So do I assume that the inlet has 1 m^3/s flowing in
and both outlets at the end have 0.5 m^3/s flowing out
For this system, yes.
 

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