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Two owner boat!
Extremely clean example of the Hunter 410, heavily upgraded!
Offers encouraged!
Porta-bote dinghy and suzuki outboard available with the sale
Washed twice monthly and wax three times per year
Standing and running rigging, mast head equipment (2017)
12’ Porta-Bote tender and Winslow life raft (up to date)
Bail out kit
Suzuki outboard for dinghy
Kiwi feather prop, spare three blade prop
Monitor wind vane with emergency rudder
Below deck autopilot
Tides Marine SailTrack system for mainsail
Fully battened mainsail, 115% jib, cruising spinnaker, and cruising spinnaker package
Raymarine GPS, radome, and three ST60 displays for depth, wind, speed, integrated AIS
Dometic 16,000 BTU AC/heat (2014)
Fischer Panda 4kW gen set (2015)
Raritan Superflush head (2019)
PYI dripless shaft seal (2020)
Three 4D AGM house bank, 1 34 AGM starter battery (2022)
Galley, nav station, companionway sole (2022)
Engine insulation (2023)
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)
Draft for deep keel: 6.33’/1.93m
See HUNTER 420 which appears similar.
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