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FrictionFlowThin

FrictionFlowThin is a powerful tool designed for engineers, hydrologists, and professionals working with fluid dynamics and porous media

FrictionFlowThin is a powerful tool designed for engineers, hydrologists, and professionals working with fluid dynamics and porous media

FrictionFlowThin

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FrictionFlowThin
FrictionFlowThin
FrictionFlowThin

What is it about?

FrictionFlowThin is a powerful tool designed for engineers, hydrologists, and professionals working with fluid dynamics and porous media. The app provides two primary calculation options: Flow Rate Calculation and Flux Calculation, based on Darcy's Law.

FrictionFlowThin

App Details

Version
1.0
Rating
NA
Size
9Mb
Genre
Utilities
Last updated
August 28, 2024
Release date
August 28, 2024
More info

App Screenshots

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App Store Description

FrictionFlowThin is a powerful tool designed for engineers, hydrologists, and professionals working with fluid dynamics and porous media. The app provides two primary calculation options: Flow Rate Calculation and Flux Calculation, based on Darcy's Law.
1. Flow Rate Calculation:
Effortlessly compute essential parameters related to fluid flow through porous media using Darcy's Law:
• Hydraulic Conductivity (k): Determine the ease with which fluid can move through a porous medium.
◦ Formula: k = Q / iA
◦ Where: Q = Flow rate, i = Hydraulic gradient, A = Flow cross-sectional area
• Hydraulic Gradient (i): Calculate the slope of the energy gradient driving the fluid flow.
◦ Formula: i = Q / kA
◦ Where: k = Hydraulic conductivity, Q = Flow rate, A = Flow cross-sectional area
• Flow Cross-Sectional Area (A): Compute the area through which fluid flows.
◦ Formula: A = Q / ki
◦ Where: k = Hydraulic conductivity, Q = Flow rate, i = Hydraulic gradient
• Flow Rate (Q): Calculate the volume of fluid flowing through the porous medium.
◦ Formula: Q = kiA
◦ Where: k = Hydraulic conductivity, i = Hydraulic gradient, A = Flow cross-sectional area
2. Flux Calculation:
Calculate key parameters to understand fluid velocity and movement through porous media:
• Hydraulic Conductivity (k): Calculate the ease of fluid movement relative to the hydraulic gradient and flux.
◦ Formula: k = V / i
◦ Where: V = Darcy velocity or flux, i = Hydraulic gradient
• Hydraulic Gradient (i): Determine the driving force behind the fluid flow.
◦ Formula: i = V / k
◦ Where: k = Hydraulic conductivity, V = Darcy velocity or flux
• Darcy Velocity or Flux (V): Calculate the velocity of fluid flow through the medium.
◦ Formula: V = ki
◦ Where: k = Hydraulic conductivity, i = Hydraulic gradient

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