3. An opening gate was installed in an irrigated land drainage system automatic to avoid flooding, articulated in O and with an angle of 0 = 40° with the horizontal, as shown in the figure. The gate weighs W = 9.0 kN and has a height L = 1.7 m; width w = 1,8 m. a) If the height of water is equal to h = 0.65 m, determine the resulting force of water on the gate and the application point in relation to point O. b) To what height of water h will the gate open? That is, rotate in the anti-schedule. L |h
3. An opening gate was installed in an irrigated land drainage system automatic to avoid flooding, articulated in O and with an angle of 0 = 40° with the horizontal, as shown in the figure. The gate weighs W = 9.0 kN and has a height L = 1.7 m; width w = 1,8 m. a) If the height of water is equal to h = 0.65 m, determine the resulting force of water on the gate and the application point in relation to point O. b) To what height of water h will the gate open? That is, rotate in the anti-schedule. L |h
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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