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Seller's Description

One of very few Pearson 37 sloops available. Perfect for day trips or long weekends on the Bay. Great sailing characteristics.This is a comfortable boat below and underway.

This boat is in excellent condition with a rebuilt Universal / Kubota 43HP diesel with low hours.

Only selling because we are moving. Best offers considered.

Disclaimer The Company offers the details of this vessel in good faith but cannot guarantee or warrant the accuracy of this information nor warrant the condition of the vessel. A buyer should instruct his agents, or his surveyors, to investigate such details as the buyer desires validated. This vessel is offered subject to prior sale, price change, or withdrawal without notice.

Equipment: The galley is aft toport and includes:

Sink

Hot / cold pressure water

Ice box

Two burner propane stove

Storage

The rig is a keel stepped mast with wire shrouds and standard boom with vang.

A Schaeffer jib furling system and an Anson furling mainsail add to the convenience of sailing.

Sails include a furling main, jib and cruising spinnaker.

Winches include Lewmar 48ST primaries, Lewmar 18 and Lewmar 30’s.

The nav station is aft to starboard and includes:

Table with storage tray

Electrical panel

Seat on forward edge of aft berth

Horizon Standard VHF

AM/FM stereo

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Specs

Designer
William Shaw
Builder
Pearson Yachts
Associations
?
# Built
?
Hull
Monohull
Keel
Wing
Rudder
?
Construction
FG

Dimensions

Length Overall
26 11 / 8.2 m
Waterline Length
121 4 / 37 m
Beam
36 5 / 11.1 m
Draft
19 8 / 6 m
Displacement
5,800 lb / 2,631 kg
Ballast
2,180 lb / 987 kg

Rig and Sails

Type
Sloop
Reported Sail Area
332′² / 30.8 m²
Total Sail Area
332′² / 30.8 m²
Mainsail
Sail Area
147′² / 13.6 m²
P
28 6 / 8.7 m
E
10 3 / 3.1 m
Air Draft
?
Foresail
Sail Area
185′² / 17.2 m²
I
34 3 / 10.5 m
J
10 9 / 3.3 m
Forestay Length
35 11 / 11 m

Auxilary Power

Make
Universal
Model
?
HP
?
Fuel Type
Diesel
Fuel Capacity
10 gal / 38 l
Engine Hours
?

Accomodations

Water Capacity
25 gal / 95 l
Holding Tank Capacity
?
Headroom
?
Cabins
?

Calculations

Hull Speed
7.3 kn
Classic: 6.36 kn

Hull Speed

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.

Formula

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

7.25 knots
Classic formula: 6.36 knots
Sail Area/Displacement
16.5
16-20: good performance

Sail Area / Displacement Ratio

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.

Formula

SA/D = SA ÷ (D ÷ 64)2/3

  • SA: Sail area in square feet, derived by adding the mainsail area to 100% of the foretriangle area (the lateral area above the deck between the mast and the forestay).
  • D: Displacement in pounds.
16.45
<16: under powered
16-20: good performance
>20: high performance
Ballast/Displacement
37.5
<40: less stiff, less powerful

Ballast / Displacement Ratio

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.

Formula

Ballast / Displacement * 100

37.51
<40: less stiff, less powerful
>40: stiffer, more powerful
Displacement/Length
227.1
200-275: moderate

Displacement / Length Ratio

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.

Formula

D/L = (D ÷ 2240) ÷ (0.01 x LWL)³

  • D: Displacement of the boat in pounds.
  • LWL: Waterline length in feet
227.13
<100: ultralight
100-200: light
200-300: moderate
300-400: heavy
>400: very heavy
Comfort Ratio
19.5
<20: lightweight racing boat

Comfort Ratio

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.

Formula

Comfort ratio = D ÷ (.65 x (.7 LWL + .3 LOA) x Beam1.33)

  • D: Displacement of the boat in pounds
  • LWL: Waterline length in feet
  • LOA: Length overall in feet
  • Beam: Width of boat at the widest point in feet
19.47
<20: lightweight racing boat
20-30: coastal cruiser
30-40: moderate bluewater cruising boat
40-50: heavy bluewater boat
>50: extremely heavy bluewater boat
Capsize Screening
2.1
>2.0: better suited for coastal cruising

Capsize Screening Formula

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.

Formula

CSV = Beam ÷ ³√(D / 64)

  • Beam: Width of boat at the widest point in feet
  • D: Displacement of the boat in pounds
2.05
<2: better suited for ocean passages
>2: better suited for coastal cruising

This listing is presented by SailboatListings.com. Visit their website for more information or to contact the seller.

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