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  2. Wave-making resistance - Wikipedia

    en.wikipedia.org/wiki/Wave-making_resistance

    The total amount of water to be displaced by a moving hull, and thus causing wave making drag, is the cross sectional area of the hull times distance the hull travels, and will not remain the same when prismatic coefficient is increased for the same lwl and same displacement and same speed.

  3. Hull (watercraft) - Wikipedia

    en.wikipedia.org/wiki/Hull_(watercraft)

    The volume of a ship's hull below the waterline (solid), divided by the volume of a rectangular solid (lines) of the same length, height and width, determine a ship's block coefficient. Coefficients [5] help compare hull forms as well: Block coefficient (C b) is the volume (V) divided by the L WL × B WL × T WL. If you draw a box around the ...

  4. Block coefficient - Wikipedia

    en.wikipedia.org/?title=Block_coefficient&...

    Download as PDF ; Printable version; In other projects ... move to sidebar hide. From Wikipedia, the free encyclopedia. Redirect page. Redirect to: Hull (watercraft)# ...

  5. Squat effect - Wikipedia

    en.wikipedia.org/wiki/Squat_effect

    The squat effect is the hydrodynamic phenomenon by which a vessel moving through shallow water creates an area of reduced pressure that causes the ship to increase its draft (alternatively decrease the underkeel clearance of the vessel in marine terms) and thereby be closer to the seabed than would otherwise be expected.

  6. Builder's Old Measurement - Wikipedia

    en.wikipedia.org/wiki/Builder's_Old_Measurement

    The height from the underside of the hull, excluding the keel itself, at the ship's midpoint, to the top of the uppermost full length deck. [4] Depth in hold Interior space; The height from the lowest part of the hull inside the ship, at its midpoint, to the ceiling that is made up of the uppermost full length deck.

  7. Hull speed - Wikipedia

    en.wikipedia.org/wiki/Hull_speed

    Hull speed or displacement speed is the speed at which the wavelength of a vessel's bow wave is equal to the waterline length of the vessel. As boat speed increases from rest, the wavelength of the bow wave increases, and usually its crest-to-trough dimension (height) increases as well.

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  9. Ship resistance and propulsion - Wikipedia

    en.wikipedia.org/wiki/Ship_resistance_and_propulsion

    For a displacement vessel, that is the usual type of ship, three main types of resistance are considered: that due to wave-making, that due to the pressure of the moving water on the form, often not calculated or measured separately, and that due to friction of moving water on the wetted surface of the hull. These can be split up into more ...

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