Design aspects of a high speed monohull RoPax ferry

This paper describes the design process of a high speed mono hull RoPax ferry which operates at a Froude number of 0.4. The design task was quite challenging, as two possible transport concepts were in principle possible: Two ships were needed with a total speed of 50knots, which could result in a c...

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Main Authors: Kluwe, Florian, Martinsen, Kay, Krüger, Stefan, Lübcke, Adele, Will, Johannes
Format: Conference Object
Language:English
Published: ASME 2015
Subjects:
Online Access:http://hdl.handle.net/11420/11408
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author Kluwe, Florian
Martinsen, Kay
Krüger, Stefan
Lübcke, Adele
Will, Johannes
author_facet Kluwe, Florian
Martinsen, Kay
Krüger, Stefan
Lübcke, Adele
Will, Johannes
author_sort Kluwe, Florian
collection Unknown
description This paper describes the design process of a high speed mono hull RoPax ferry which operates at a Froude number of 0.4. The design task was quite challenging, as two possible transport concepts were in principle possible: Two ships were needed with a total speed of 50knots, which could result in a combination of a 30kn high speed Catamaran plus a conventional 20kn RoPax Ferry or alternatively in two identical sister vessels of 25kn each. The solution with the high speed catamaran plus the conventional RoPax-Ferry defined the total cost budget, which must not be exceeded by the design of the two sister vessels. This resulted in a tough boundary condition and made life cycle cost evaluations necessary. Due to harbor restrictions, the length of the ships was limited by abt. 110m, resulting in a Froude number of abt. 0.4. This resulted in high costs for the propulsion system. The ferries should initially have open RoRo-Cargo spaces for cost reasons, which made the stability requirements (weather criterion plus Stockholm Agreement) quite challenging. This also strongly influenced the design of the final hull form. As the ship is very sensitive to weight, detailed steel structure optimizations had to be carried out to optimize the main grillage systems of the vehicle decks. The hull form and the appendage design required careful optimization to guarantee the required service speed with the engine power which was available in the price budget. As no vessel of comparison was available, the speed power estimation as well as all design tasks had fully to rely on numerical predictions. As the ship had further demanding requirements for course keeping and comfort in waves, the optimization of the hull form must include also these issues. The paper shows that the design of complex ships is actually a holistic task which includes many engineering disciplines. The paper also shows that 1st principle based design methods can support the design process of specialized vessels significantly.
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op_relation ASME 2015 34th International Conference on Ocean, Offshore and Arctic Engineering, OMAE 2015
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spelling fttuhamburg:oai:tore.tuhh.de:11420/11408 2025-06-15T14:16:23+00:00 Design aspects of a high speed monohull RoPax ferry Kluwe, Florian Martinsen, Kay Krüger, Stefan Lübcke, Adele Will, Johannes 2015 http://hdl.handle.net/11420/11408 en eng ASME ASME 2015 34th International Conference on Ocean, Offshore and Arctic Engineering, OMAE 2015 978-0-7918-5655-0 http://hdl.handle.net/11420/11408 600: Technik 620: Ingenieurwissenschaften Conference Paper Other 2015 fttuhamburg 2025-05-16T03:52:30Z This paper describes the design process of a high speed mono hull RoPax ferry which operates at a Froude number of 0.4. The design task was quite challenging, as two possible transport concepts were in principle possible: Two ships were needed with a total speed of 50knots, which could result in a combination of a 30kn high speed Catamaran plus a conventional 20kn RoPax Ferry or alternatively in two identical sister vessels of 25kn each. The solution with the high speed catamaran plus the conventional RoPax-Ferry defined the total cost budget, which must not be exceeded by the design of the two sister vessels. This resulted in a tough boundary condition and made life cycle cost evaluations necessary. Due to harbor restrictions, the length of the ships was limited by abt. 110m, resulting in a Froude number of abt. 0.4. This resulted in high costs for the propulsion system. The ferries should initially have open RoRo-Cargo spaces for cost reasons, which made the stability requirements (weather criterion plus Stockholm Agreement) quite challenging. This also strongly influenced the design of the final hull form. As the ship is very sensitive to weight, detailed steel structure optimizations had to be carried out to optimize the main grillage systems of the vehicle decks. The hull form and the appendage design required careful optimization to guarantee the required service speed with the engine power which was available in the price budget. As no vessel of comparison was available, the speed power estimation as well as all design tasks had fully to rely on numerical predictions. As the ship had further demanding requirements for course keeping and comfort in waves, the optimization of the hull form must include also these issues. The paper shows that the design of complex ships is actually a holistic task which includes many engineering disciplines. The paper also shows that 1st principle based design methods can support the design process of specialized vessels significantly. Conference Object Arctic Unknown
spellingShingle 600: Technik
620: Ingenieurwissenschaften
Kluwe, Florian
Martinsen, Kay
Krüger, Stefan
Lübcke, Adele
Will, Johannes
Design aspects of a high speed monohull RoPax ferry
title Design aspects of a high speed monohull RoPax ferry
title_full Design aspects of a high speed monohull RoPax ferry
title_fullStr Design aspects of a high speed monohull RoPax ferry
title_full_unstemmed Design aspects of a high speed monohull RoPax ferry
title_short Design aspects of a high speed monohull RoPax ferry
title_sort design aspects of a high speed monohull ropax ferry
topic 600: Technik
620: Ingenieurwissenschaften
topic_facet 600: Technik
620: Ingenieurwissenschaften
url http://hdl.handle.net/11420/11408