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  2. Hull speed - Wikipedia

    en.wikipedia.org/wiki/Hull_speed

    Hull speed can be calculated by the following formula: where is the length of the waterline in feet, and is the hull speed of the vessel in knots. If the length of waterline is given in metres and desired hull speed in knots, the coefficient is 2.43 kn·m −½.

  3. Waterline length - Wikipedia

    en.wikipedia.org/wiki/Waterline_length

    In particular, any "displacement" or non-planing boat requires much greater power to accelerate beyond its hull speed, which is determined by the length of the waterline, and can be calculated using the formula: Vmax (in knots) = square root of LWL (in feet) x 1.34. The hull speed is the speed at which the wavelength of the bow wave stretches ...

  4. Ship resistance and propulsion - Wikipedia

    en.wikipedia.org/wiki/Ship_resistance_and_propulsion

    For thousands of years ship designers and builders of sailing vessels used rules of thumb based on the midship-section area to size the sails for a given vessel. The hull form and sail plan for the clipper ships, for example, evolved from experience, not from theory. It was not until the advent of steam power and the construction of large iron ...

  5. International rule (sailing) - Wikipedia

    en.wikipedia.org/wiki/International_rule_(sailing)

    For the International rule, the rating number is approximately equal to the sailing length of the hull. These boats have long overhangs which allow the waterline length to increase as the boat heels over. A displacement hull's maximum speed (the hull speed) is directly proportional to the square root of its waterline length. [2]

  6. Under keel clearance - Wikipedia

    en.wikipedia.org/wiki/Under_keel_clearance

    For US waters, the US Code of Federal Regulations require ships and their masters to calculate UKC based on the ship's deepest navigational draft. 33 CFR 157.450 The regulations require the master to discuss the UKC calculation with the maritime pilot as the ship approaches US ports/waters. 33 CFR 157.450

  7. Strength of ships - Wikipedia

    en.wikipedia.org/wiki/Strength_of_ships

    Tertiary strength and loads are the forces, strength, and bending response of individual sections of hull plate between stiffeners, and the behaviour of individual stiffener sections. Usually the tertiary loading is simpler to calculate: for most sections, there is a simple, maximum hydrostatic load or hydrostatic plus slamming load to calculate.

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  9. Velocity prediction program - Wikipedia

    en.wikipedia.org/wiki/Velocity_prediction_program

    A velocity prediction program (VPP) is a computer program which solves for the performance of a sailing yacht in various wind conditions by balancing hull and sail forces. VPPs are used by yacht designers, boat builders, model testers, sailors, sailmakers, also America's Cup teams, to predict the performance of a sailboat before it has been built or prior to major modifications.