Innovative ferry family from Finland

05 Oct 2010
The  sleek, modern ferry design concepts from Wärtsilä and Deltamarin

The sleek, modern ferry design concepts from Wärtsilä and Deltamarin

Wärtsilä, together with Deltamarin, which claims to be the foremost design company in the cruise and ferry market, has introduced an innovative series of ferry designs.

By working in partnership, the two companies have identified the need for a rational approach to ferry design, and to the entire newbuilding process. Ferries are a niche market and represent less than 1% of the world's shipping fleet.

Most ferries have a unique design, which is produced according to the special characteristics of each route, highly diverse passenger and freight requirements, and the owner's own business model. This diversity results in very high prototype costs for each vessel, to the extent that ferries may be hard to trade and finance. However, standardisation has seldom been the answer, and has usually led to sub-optimal ships with low profitability.

From an environmental point of view, in the future ferries will have to operate using less fuel and creating lower emission levels. This can be achieved by benefiting from state-of-the-art design improvements, through optimizing machinery and systems, and by implementing the latest innovations in propulsion technology. These innovations are costly and must be standardized wherever possible.

The break-through achieved by Wärtsilä and Deltamarin, unveiled at the 35th Interferry Conference in New York, is the development of the so-called Parametric Design Method. Using this method, designers can make a clear distinction between the marketable and non-marketable features of a vessel. For example, the size and architecture of the passenger accommodation and recreation areas are marketable features of a ship, and can be tailored to each customer's particular needs. On the other hand, the construction of the ship, the engine room layout, piping and ventilation, power, navigation and automation systems can all be designed using a more industrial method. By modularizing and parameterising these elements within the ship, the same benefits can be utilized in subsequent ships without them becoming duplicates.

The savings resulting from use of the parametric approach will be considerable, both in the initial investment as well as in operational costs. The industrial engineering of ship systems, and the serial effect created from pre-designed modules, is estimated to result in cost savings of approximately 15%. The fuel economy of these ferries, compared with ferries built 10-15 years ago, will also improve by 15%, not least as a result of developments in Wärtsilä’s technology and Deltamarin’s advances in ship design. 

Evolving emission regulations will inevitably require the re-design of many vessel types. This is especially true for ferries operating in (future) ECAs, (Emission Control Areas), and having passengers as their most important ‘cargo’.

An important aim of this project is to introduce advanced, environmentally sound solutions, applied in a modular way and that are prepared for any future requirements.

Deltamarin and Wärtsilä are continuously developing these solutions, and will continue to do so with this aim as a vital element of the sustainability strategy in both companies. Examples of this joint commitment include Deltamarin’s highly efficient ferry designs that are setting new standards in the market and Wärtsilä’s propulsion arrangements, exhaust gas cleaning systems and, in particular, its base of installed LNG dual fuel marine engines, which is the largest in the market.

Another unique aspect of this co-operation is that Wärtsilä and Deltamarin will be able to generate, quickly and reliably, customized ferry concept designs for the owner’s feasibility and budgeting purposes. This will shorten time-to-market considerations notably. The subsequent basic design can be generated rapidly, thanks to the combination of parametrically pre-designed elements and pre-engineered ship machinery and systems.

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