The Rawson 30 is equipped with a long keel. A long keel provide a better directional stability than a similar boat with a fin keel; on the other hand, better directional stability means also that the boat is more difficult to handle in a harbour with less space.
The keel is made of iron. Many people prefer lead keel in favour of iron. The main argument is that lead is much heavier than iron and a lead keel can therefore be made smaller which again result in less wet surface, i.e. less drag. In fact iron is quite heavy, just 30% less heavy than lead, so the advantage of a lead keel is often overstated.
The boat can enter most marinas as the draft is just about 1.52 - 1.62 meter (4.99 - 5.29 ft) dependent on the load. See immersion rate below.
The boat is typically equipped with a Palmer gasoline engine at 22.0 hp (16 kW), which gives a max speed about 4.7 knots.
The fuel tank has a capacity of 140.0 liters (36 US gallons, 30 imperial gallons).
This section covers widely used rules of thumb to describe the sailing characteristics. Please note that even though the calculations are correct, the interpretation of the results might not be valid for extreme boats.
What is Capsize Screening Formula (CSF)?
The capsize screening value for Rawson 30 is 1.57, indicating that this boat could - if evaluated by this formula alone - be accepted to participate in ocean races.
What is Theoretical Maximum Hull Speed?
The theoretical maximal speed of a displacement boat of this length is 6.3 knots. The term "Theoretical Maximum Hull Speed" is widely used even though a boat can sail faster. The term shall be interpreted as above the theoretical speed a great additional power is necessary for a small gain in speed.
The immersion rate is defined as the weight required to sink the boat a certain level.
The immersion rate for Rawson 30 is about 123 kg/cm, alternatively 689 lbs/inch.
Meaning: if you load 123 kg cargo on the boat then it will sink 1 cm.
Alternatively, if you load 689 lbs cargo on the boat it will sink 1 inch.
This section is statistical comparison with similar boats of the same category. The basis of the following statistical computations is our unique database with more than 26,000 different boat types and 350,000 data points.
What is Motion Comfort Ratio (MCR)?
The Motion Comfort Ratio for Rawson 30 is 40.2.
What is L/B (Length Beam Ratio)?
The l/b ratio for Rawson 30 is 3.39.
The ballast ratio for Rawson 30 is 42%.
What is Displacement Length Ratio?
The DL-ratio for Rawson 30 is 502 which categorizes this boat among 'heavy cruisers'.
What is SA/D (Sail Area Displacement ratio)?
The SA/D for Rawson 30 with ISO 8666 reference sail is 12.9, with a 135% genua the SA/D is 15.0.
When buying anti-fouling bottom paint, it's nice to know how much to buy.
The surface of the wet bottom is about 21m2 (226 ft2).
Based on this, your favourite maritime shop can tell you the quantity you need.
Note: If you use a paint roller you will need more paint than if you use a paintbrush.
Dimensions of sail for masthead rig.
Are your sails worn out? You might find your next sail here: Sails for Sale
If you need to renew parts of your running rig and is not quite sure of the dimensions, you may find the estimates computed below useful.
Usage | Length | Diameter | ||
Mainsail halyard | 25.5 m | (83.7 feet) | 10 mm | (3/8 inch) |
Jib/genoa halyard | 25.5 m | (83.7 feet) | 10 mm | (3/8 inch) |
Spinnaker halyard | 25.5 m | (83.7 feet) | 10 mm | (3/8 inch) |
Jib sheet | 9.3 m | (30.5 feet) | 12 mm | (1/2 inch) |
Genoa sheet | 9.3 m | (30.5 feet) | 12 mm | (1/2 inch) |
Mainsheet | 23.2 m | (76.3 feet) | 12 mm | (1/2 inch) |
Spinnaker sheet | 20.5 m | (67.1 feet) | 12 mm | (1/2 inch) |
Cunningham | 4.3 m | (14.2 feet) | 10 mm | (3/8 inch) |
Kickingstrap | 8.7 m | (28.4 feet) | 10 mm | (3/8 inch) |
Clew-outhaul | 8.7 m | (28.4 feet) | 10 mm | (3/8 inch) |
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