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The owner bought this boat in 2021
Standard features
Four-cylinder Universal Diesel M35 - 30 HP - Fresh Water Cooled - 3730 Hours Last year engine had total overhaul – new pistons, rings, cylinder honing, crankshaft and piston connectors bearings, head and valves, injectors. Wing Keel - 44 Draft Sunbrella Bimini Top with Forward Bimini and attachable middle section 7 person offshore life raft Bimini Dodger Two Staterooms Two sets of internal cushions covers (marine vinyl and fabric) One Head - electric flush Full Galley Maxwell 1000 windlass with remote Adler marine AC Solar panel mounted over strong davits Inverter Two 400W each wind generators Navigation center Mounted VHF radio New wheel mounted Raymarine EV-100 Garmin Digital Depth, Wind Speed Direction, Garmin Chart Plotter Furuno 1621 radar 30 Amp Shore power with multiple cords All Lines run to cockpit and boat is easily single handed Standing Rigging still good condition Running Rigging is in good condition Sails in good condition (main, 135 genoa, spinnaker, storm jib) Sturdy davits system 10’-2” – 4-person inflatable boat with aluminum floor (not rib type) 8HP Yamaha 2 stroke outboard motor
The theoretical maximum speed that a displacement hull can move efficiently through the water is determined by it's waterline length and displacement. It may be unable to reach this speed if the boat is underpowered or heavily loaded, though it may exceed this speed given enough power. Read more.
Classic hull speed formula:
Hull Speed = 1.34 x √LWL
A more accurate formula devised by Dave Gerr in The Propeller Handbook replaces the Speed/Length ratio constant of 1.34 with a calculation based on the Displacement/Length ratio.
Max Speed/Length ratio = 8.26 ÷ Displacement/Length ratio.311
Hull Speed = Max Speed/Length ratio x √LWL
A measure of the power of the sails relative to the weight of the boat. The higher the number, the higher the performance, but the harder the boat will be to handle. This ratio is a "non-dimensional" value that facilitates comparisons between boats of different types and sizes. Read more.
SA/D = SA ÷ (D ÷ 64)2/3
A measure of the stability of a boat's hull that suggests how well a monohull will stand up to its sails. The ballast displacement ratio indicates how much of the weight of a boat is placed for maximum stability against capsizing and is an indicator of stiffness and resistance to capsize.
Ballast / Displacement * 100
A measure of the weight of the boat relative to it's length at the waterline. The higher a boat’s D/L ratio, the more easily it will carry a load and the more comfortable its motion will be. The lower a boat's ratio is, the less power it takes to drive the boat to its nominal hull speed or beyond. Read more.
D/L = (D ÷ 2240) ÷ (0.01 x LWL)³
This ratio assess how quickly and abruptly a boat’s hull reacts to waves in a significant seaway, these being the elements of a boat’s motion most likely to cause seasickness. Read more.
Comfort ratio = D ÷ (.65 x (.7 LWL + .3 LOA) x Beam1.33)
This formula attempts to indicate whether a given boat might be too wide and light to readily right itself after being overturned in extreme conditions. Read more.
CSV = Beam ÷ ³√(D / 64)
(1986-1991)
Among changes were ‘T’ cockpit, slightly different deck and liner, and different Engine options.
A wing keel version was available,(hull #500+) as was a tall rig.
Wing keel:
DRAFT: 1.17m/3.83’.
BALLAST: 4300lbs/1950kg
DISPLACEMENT: 10,300lbs/4672kg
TALL RIG:
I: 43.00’/13.11m
J: 13.16’/4.01m
P: 37.00’/11.28m
E: 12.00’/3.66m
Sail Area(100%): 504.94 ft2/46.91 m2
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