...
| Latex |
|---|
\LARGE
\begin{equation}\nonumber
M_{2N}^2 = M_{1N}^2(\frac{(\gamma -1)M_{1N}+2}{2\gamma M_{1N}-(\gamma -1)})
\end{equation}
\\
\\
\begin{equation}\nonumber
M_2 =\frac{M_{2N}}{sin(\Beta-\theta)}
\end{equation}
\\
\\
\begin{equation}\nonumber
\frac{p2}{p1} = \frac{2\gamma M_{1N}^2 - (\gamma - 1)}{\gamma + 1}
\end{equation}
\\
\\
\begin{equation}\nonumber
\frac{T2}{T1} = \frac{(2\gamma M_{1N}^2 - (\gamma - 1))((\gamma -1)M_{1N}^2 +2)}{(\gamma +1)^2 M_{1N}^2}
\end{equation}
\\
|
From the equations above it is quite easy to relate upstream quantities.
...
Sign-up for free online course on ANSYS simulations!