Force
\[P=\int_{0}^{H}\rho \cdot g \cdot \left ( H -h\right )\cdot Bdh [N]\]
Moment of Force
\[mP=\int_{0}^{H}\rho \cdot g \cdot \left ( H -h\right )\cdot h\cdot Bdh [m \cdot N]\]
Center of pressure
\[h_D=\frac{mP}{P} [m]\]
For a rectangular surface:
\[H=7 m,h=7 m, B=3 m, \rho = 1000 \frac{kg}{m^{3}}, g=9.81 \frac{m}{s^{2}} \]
\[P=\int_{0}^{H}\rho \cdot g \cdot \left ( H -h\right )\cdot Bdh [N]\]
\[P(\rho ,g,H,h,B)=\int_{0}^{7}1000 \cdot 9.81 \cdot \left ( 7 -h\right )\cdot 3dh = 721035 N \]
\[mP=\int_{0}^{H}\rho \cdot g \cdot \left ( H -h\right )\cdot h\cdot Bdh [m \cdot N]\]
\[mP=\int_{0}^{7}1000 \cdot 9.81 \cdot \left ( 7 -h\right )\cdot h\cdot 3dh = 1680011.55[m \cdot N]\]
\[h_D=\frac{\int_{0}^{H}\rho \cdot g \cdot \left ( H -h\right )\cdot h\cdot Bdh}{\int_{0}^{H}\rho \cdot g \cdot \left ( H -h\right )\cdot Bdh} [m]\]
\[h_D=\frac{mP}{P} [m]\]
\[h_D=\frac{\int_{0}^{7}1000 \cdot 9.81 \cdot \left ( 7 -h\right )\cdot h\cdot 3dh}{\int_{0}^{7}1000 \cdot 9.81 \cdot \left ( 7 -h\right )\cdot 3dh} = 2.33 m \]
\[h_D=\frac{1680011.55 \cdot m \cdot N}{721035 N} = 2.33 m \]
\[P(\rho ,g,H,h,B)=\int_{0}^{7}1000 \cdot 9.81 \cdot \left ( 7 -h\right )\cdot 3dh = 721035 N \]
\[mP=\int_{0}^{7}1000 \cdot 9.81 \cdot \left ( 7 -h\right )\cdot h\cdot 3dh = 1680011.55[m \cdot N]\]
\[h_D=\frac{1680011.55 \cdot m \cdot N}{721035 N} = 2.33 m \]