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Comparison RiverBoats RB-350TT vs Kolibri KM-300D

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RiverBoats RB-350TT
Kolibri KM-300D
RiverBoats RB-350TTKolibri KM-300D
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from $506.48 up to $733.28
Outdated Product
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Typemotor-rowingmotor-rowing
Number of seats44
Load capacity500 kg400 kg
Equipment
Bottom typeinflatable keelinflatable keel
Bottom coverrigid plywood flooringrigid plywood flooring
Transombuilt-inbuilt-in
Seatsrigid and movablerigid and movable
More features
water release valve
carrying handles
swivel oarlocks
eye roller
water breaker
lifeline
water release valve
carrying handles
swivel oarlocks
eye roller
water breaker
lifeline
Specs
Maximum motor power18 hp10 hp
Number of pressurized compartments54
Balloon diameter43 cm42 cm
Dimensions (LxW)350x155 cm300х160 cm
Cockpit dimensions (LxW)251x70 cm202х76 cm
Dimensions (folded)60х45х100 cm100х57х40 cm
Fabric density900 g/m²1100 g/m²
Weight52 kg55 kg
Items in set
Paddles
Pump
Repair kit
Boat bag
Added to E-Catalogapril 2017july 2014

Load capacity

The maximum weight of cargo that the boat is normally designed to carry. The cargo in this case includes both passengers and their luggage, as well as the engine and various additional equipment.

The carrying capacity stated in the characteristics clearly cannot be exceeded: although most inflatable boats are able to stay afloat even with severe overload, in such conditions controllability and stability noticeably deteriorate, wear increases and the likelihood of damage to the bottom or cylinder increases. We also note that there is no strict connection between the carrying capacity and the number of seats (see above): models with the same number of seats can differ significantly in permissible load. And it is important to take boats with a large carrying capacity if necessary, because this affects the density of materials, overall weight and price.

Maximum motor power

The maximum engine power allowed for this boat.

The power limitation is primarily due to the fact that not every boat normally tolerates high speeds. In addition, powerful motors and weigh a lot, which puts forward appropriate requirements for the strength of the transom. So it is extremely undesirable to exceed the permissible power: even at low thrust, the structure will be subjected to abnormal loads, and full thrust can lead to a rollover or damage to the boat.

Number of pressurized compartments

The number of separate compartments provided in the design of the boat's inflatable balloon. This arrangement increases the reliability and safety of the vessel: in the event of a puncture, air does not escape from the entire cylinder, but only from one compartment, the rest remain filled. Therefore, even the simplest modern boats have at least two separate compartments, and in the most advanced this number can reach six.

The more compartments there are, the safer the vessel in case of damage to the cylinder, but the more complex and expensive its design is. Therefore, this parameter usually depends primarily on the size of the boat — after all, larger and lifting models should be more reliable and lose less buoyancy in case of damage.

Note that the inflatable keel (if any, see "Bottom type") is also taken into account in this case, since in fact it is also a separate pressurized compartment: for example, if 5 compartments are indicated for a model with such a bottom, this means 4 sections in sides plus keel.

Balloon diameter

The diameter of the boat's balloon — the inflatable shell that forms the sides — in a fully inflated state. This parameter primarily affects the dimensions of the cockpit (see below): with the same dimensions of the boat, a thicker cylinder leaves less space in the cockpit. Also, the carrying capacity is somewhat related to the diameter — a large cylinder usually holds more air and gives more buoyancy; however, in fact, the possibilities for transporting goods are also highly dependent on the characteristics of the bottom and the overall strength of the structure.

Dimensions (LxW)

The dimensions of the inflated boat in length and width, along the outer edges (excluding oars, motor, etc.). This parameter allows you to estimate how much space the vessel will occupy in the working position. In addition, the first size value — length — indicates other parameters: the larger it is, the better the boat is suitable for gliding and, usually, its capacity is greater (see "Number of seats").

Cockpit dimensions (LxW)

The dimensions of the cockpit — the internal space of the boat, which accommodates passengers and cargo. The larger these dimensions, the more spacious the vessel, however, its overall dimensions (see above) increase accordingly. The length of the cockpit is measured from bow to stern, the width is measured by the greatest distance between port and starboard.

Dimensions (folded)

Dimensions of the boat when fully deflated and collapsed. The more compact the folded boat, the more convenient it will be in storage and transportation; at the same time, too small, in comparison with analogues, dimensions can indicate a small thickness of the shell and relatively low reliability.

Fabric density

The density of the PVC fabric from which the boat is made.

The higher the density, the heavier the ship will be, other things being equal. In addition, it is generally accepted that a denser fabric is at the same time more durable, reliable and wear-resistant. However, much also depends on the characteristics of the production of a particular brand of PVC. As a result, the difference in performance between two boats with different densities may not be as significant as the difference in density itself.

Weight

The total weight of the boat with oars and decking (if any), but excluding the motor and additional attachments. The lighter the boat, the more convenient it is to carry, however, a small weight can affect either the price or the quality (compared to analogues). Weight also affects speed characteristics — a lighter boat is easier to accelerate to high speed with the same motor power; however, do not forget that these characteristics also depend on the material, the shape of the bottom and many other parameters.
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