A solid cylindrical pine (S = 0.50) spar buoy has a cylindrical lead (S = 11.3) weight attached, as shown in the figure below. Heights of the buoy and the lead weight are p = 19 ft and l = 0.4 ft respectively. 2 ft V Lead Part a d Determine the equilibrium position of the spar buoy in seawater (i.e., find d). For seawater, S = 1.03. d = 13.612 Part b ft Is this spar buoy stable or unstable?
A solid cylindrical pine (S = 0.50) spar buoy has a cylindrical lead (S = 11.3) weight attached, as shown in the figure below. Heights of the buoy and the lead weight are p = 19 ft and l = 0.4 ft respectively. 2 ft V Lead Part a d Determine the equilibrium position of the spar buoy in seawater (i.e., find d). For seawater, S = 1.03. d = 13.612 Part b ft Is this spar buoy stable or unstable?
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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