Clubman Super 30 Specifications
Main Specs
Length, m | 9.50 |
Beam, m | 3.29 |
Draft, m | 2.10 |
Displacement, kg | 2800.00 |
Classification
Hull Type | Lifting Keel |
Hull Material | FG |
Rigging and Keel
Rig | Fractional Sloop |
Keel | Lead |
Max Draft, m | 2.10 |
Engine
Engine Type | Diesel |
Engine Model | Bukh |
Engine Power | 12 |
Manufacturer Information
Shipyard | Austral Yachts |
Country | Australia |
Designer | Scott Jutson |
Period of manufacturing | 2000 - 2000 |
Technical Specs
LOA, m | 9.50 |
Sail Area (S.A.), m² | 69.68 |
Sailboat Calculations
SA/D = SA (ft²) ÷ [Disp (lbs) / 64]^0.666
A sail area/displacement ratio below 16 would be considered under powered; 16 to 20 would indicate reasonably good performance; above 20 suggests relatively high performance.
CSF = Beam ÷ (Disp in cubic ft)^(1/3)
Designed to determine if a boat has blue water capability. The CSF compares beam with displacement since excess beam contributes to capsize and heavy displacement reduces capsize vulnerability. The boat is better suited for ocean passages (vs coastal cruising) if the result of the calculation is 2.0 or less. The lower the better.
S.A. / Displacement | 35.77 |
Capsize Screening Formula | 2.36 |
Rig and Sail Particulars
S.A. Fore = I * J / 2
This is the area of the fore triangle, calculated by multiplying I and J and dividing by 2.
S.A. Main = P * E / 2
This is the area of the main triangle, calculated by multiplying P and E and dividing by 2.
S.A. Total = S.A. Fore + S.A. Main
This is the sum of the fore and main sail areas.
Est. Forestay Length = √(I² + J²)
This is the length of the forestay, calculated using the Pythagorean theorem.
I, m | 12.13 |
J, m | 3.70 |
P, m | 12.60 |
E, m | 7.50 |
S.A. Fore, m² | 22.44 |
S.A. Main, m² | 47.25 |
S.A. Total, m² | 69.69 |
Est. Forestay Length, m | 12.68 |