Versions Compared

Key

  • This line was added.
  • This line was removed.
  • Formatting was changed.
Comment: Migration of unmigrated content due to installation of a new plugin
Include Page
FLUENT Google Analytics
FLUENT Google Analytics
Include Page
Turbulent Pipe Flow - Panel
Turbulent Pipe Flow - Panel

Turbulent Pipe Flow

Created using ANSYS 13.0

Problem Specification

Let's revisit the pipe flow example considered in the previous exercise. As before, the inlet velocity is 1 m/s, the fluid exhausts into the ambient atmosphere and density is 1 kg/m3. For µ = 2 x 10 -5 kg/(ms), the Reynolds no. based on the pipe diameter and average velocity at the inlet is

Wiki Markup
{latex}
\large
$$
{Re} = {\rho VD \over \mu} = 10,000
$$
{latex}

This change of viscosity has taken us from a Reynolds number of 100 to 10,000. At this Reynolds number, the flow is usually completely turbulent.

We'll solve this problem numerically using ANSYS FLUENT. Among the results we'll look at are centerline velocity, skin friction coefficient and the axial velocity profile at the outlet.

Go to Step 1: Pre-Analysis & Start-Up

Go to all FLUENT Learning Modules