Sommerfeld Number formula |
||
\( S \;=\; \left( \dfrac{ r }{ c} \right)^2 \cdot \dfrac{ \mu \cdot n }{ P } \) (Sommerfeld Number) \( r \;=\; c \cdot \sqrt{ \dfrac{ S \cdot P }{ \mu \cdot n } }\) \( c \;=\; r \cdot \sqrt{ \dfrac{ \mu \cdot n }{ S \cdot P } }\) \( \mu \;=\; \dfrac{ S \cdot P \cdot \left( \dfrac{ c }{ r} \right)^2 }{ n } \) \( n \;=\; \dfrac{ S \cdot P \cdot \left( \dfrac{ c }{ r } \right)^2 }{ \mu } \) \( P \;=\; \dfrac{ \mu \cdot n \cdot \left( \dfrac{ r }{ c } \right)^2 }{ S } \) |
||
Symbol | English | Metric |
\( S \) = Sommerfield Number | \(dimensionless\) | \( dimensionless \) |
\( r \) = Shaft Radius | \(ft\) | \(m\) |
\( c \) = Radius Clearance | \(ft\) | \(m\) |
\( \mu \) (Greek symbol mu) = Absolute Viscosity | \(lbf - sec / ft^2\) | \( Pa - s \) |
\( n \) = Shaft Rotational Speed | \(r \;/\; min\) | \(r \;/\; min\) |
\( P \) = Load per Unit of Projected Bearing Area | \(lbf - ft\) | \(N - m\) |
Sommerfeld Number Applications