Hydrostatics: Buoyancy & Stability — Worked Examples
These problems progress from Archimedes' principle to initial floating-body stability. Metacentric and load-shift calculations are used only for small-angle behavior, and uplift ratios are reported without assuming a universal acceptance threshold.
Floating Wooden Cube
A homogeneous wooden cube has side length and specific gravity . Determine the submerged depth when it floats freely in water.
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0 of 2 Steps CompletedCable Tension on a Fully Submerged Concrete Block
A concrete block has density . It is fully submerged in water and supported by a vertical cable from above. Determine cable tension.
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0 of 3 Steps CompletedApparent Weight of a Submerged Steel Object
A steel object has volume and density . Determine its true weight and the upward support force required to hold it fully submerged in water.
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0 of 3 Steps CompletedDraft of a Rectangular Pontoon
A rectangular pontoon is long and wide and weighs . Determine its draft in seawater with specific weight , assuming vertical sides over the immersed depth.
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0 of 2 Steps CompletedTransverse Metacentric Height of a Loaded Pontoon
A rectangular pontoon is long, wide, and deep. The pontoon weighs with . A load has its center of gravity above the deck. The pontoon floats in seawater with . Determine transverse .
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0 of 4 Steps CompletedHeel Caused by a Transverse Load Shift
The pontoon in the preceding example has displacement weight and corrected . A load is shifted sideways. Estimate the equilibrium heel angle.
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0 of 2 Steps CompletedFraction of an Iceberg above Seawater
Ice has density and seawater has density . Determine the percentage of a freely floating iceberg below and above the water surface, neglecting entrained air and density variation within the ice.
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0 of 2 Steps CompletedFree-Surface Correction in a Partly Filled Tank
A floating body displaces of seawater of density . Its solid-loading metacentric height is . One partly filled freshwater tank has a rectangular free surface long and wide, with the dimension transverse to the roll axis. Determine the free-surface correction and corrected .
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0 of 3 Steps CompletedEffect of Adding Low Ballast on Pontoon Stability
Use the loaded pontoon from the metacentric-height example, initially and . Add of ballast with its center above the keel. The rectangular waterplane remains by and seawater specific weight is . Recompute draft and initial .
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0 of 3 Steps CompletedApproximate Small-Roll Period
A floating body has corrected and mass radius of gyration about its roll axis. Estimate its undamped small-roll period.
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0 of 2 Steps CompletedGroundwater Uplift on an Empty Buried Tank
An empty rectangular tank has external dimensions and is fully submerged below the groundwater table. The combined downward resistance from tank self-weight and justified permanent overburden is . Using water specific weight , determine buoyant uplift and the simple uplift safety ratio. Do not judge acceptability without a specified design criterion.