Hydrostatic Pressure and Force — Question 9

PDF ↗

Question 9

A student uses constant pressure at the bottom of a 3-m-tall vertical rectangular gate. Explain the resulting bias and find the ratio of this estimate to the true force when the top is at the surface.

See the diagram in the original worksheet below.

Original worksheet page 1: question and worked solution for 2-4-009
Show solutionHide solution

Question 9 – Solution

See the diagram in the original worksheet below.

Step 1: Write the student’s estimate. The student applies the bottom pressure p=γ(3)p=\gamma(3) uniformly over the entire gate of area AA. Thus Fest=3γA.F_{\mathrm{est}}=3\gamma A.

Step 2: Find the true force. For a rectangular gate extending from the surface to depth 33 m, the centroid is at the average depth y‾=0+32=32 m.\bar y=\frac{0+3}{2}=\frac32\text{ m}. Therefore, Ftrue=γAy‾=32γA.F_{\mathrm{true}}=\gamma A\bar y =\frac32\gamma A.

Step 3: Compare the estimate with the true force. FestFtrue=3γA32γA=2.\frac{F_{\mathrm{est}}}{F_{\mathrm{true}}} =\frac{3\gamma A}{\frac32\gamma A}=2. Thus the estimate is twice the true value: Fest=2Ftrue.\boxed{F_{\mathrm{est}}=2F_{\mathrm{true}}}.

Step 4: Express the bias as a percent error. Fest−FtrueFtrue×100%=(2−1)100%=100%.\frac{F_{\mathrm{est}}-F_{\mathrm{true}}}{F_{\mathrm{true}}} \times100\% =(2-1)100\%=100\%. The bottom-pressure estimate is 100% too high.\boxed{\text{The bottom-pressure estimate is }100\%\text{ too high.}}

Original worksheet page 2: question and worked solution for 2-4-009

Original worksheet layout. Use Enlarge or open the PDF for a closer view.