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Träfflista för sökning "WFRF:(Ahuja Gaurav) srt2:(2005-2009)"

Sökning: WFRF:(Ahuja Gaurav) > (2005-2009)

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  • Ahuja, Gaurav, 1978 (författare)
  • Application of a Sandwich Construction on a Superstructure of a High Speed Ferry
  • 2007
  • Licentiatavhandling (övrigt vetenskapligt/konstnärligt)abstract
    • Usage of light weight materials has gained momentum in the marine market in the last few decades. This rise has lead to some ships using parts fabricated out of materials like glass and carbon fibre. A major advantage of the usage of light weight materials in shipping is that it either increases the cargo carrying capacity of the vessel or reduces the fuel consumption or both. Different kinds of problems and issues need to be addressed when using new and innovative materials. These problems range from issues of both technical and non-technical nature. Technical problems are generally related to structural strength, fire safety and joining materials of different kinds. Non-technical issues would include maintenance and most importantly getting a good idea about the economics and pay back time of using light weight materials.This thesis discusses the possibility of using light weight materials like glass and carbon fibre as a super structure on board the 88 m long Stena Carisma catamaran. Sandwich construction is the recommended method of employing light weight construction. Different concepts have been generated using the spacing of pillars and the materials used. Analytical structural analysis for each concept is performed. The concept that has the lightest weight is further evaluated using the finite element (FE) method. Thus both analytical calculations and FE analyses have been used to confirm the feasibility of having a sandwich superstructure for the vessel. Both static and dynamic analysis are conducted for the study of the superstructure. Classification society regulations are used as the base to do the structural calculations. Considering the various criteria of the society, a structural optimisation is also performed. Based on the results obtained from the analysis performed, it is shown that a conventional aluminium superstructure for such a vessel can be replaced by innovative light weight materials. This replacement would be accompanied by a reduction in the weight of the vessel as well as by reduced maintenance requirement. Thus there is a two fold benefit from application of light weight materials. This work includes the structural analysis of the superstructure made of composite materials and also about the interaction of the two materials namely aluminium and the composites. FE analysis has been done to understand the structural behaviour of the structure. This analysis is carried out in ANSYS.
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  • Ahuja, Gaurav, 1978, et al. (författare)
  • Sandwich Construction - Application on a superstructure
  • 2005
  • Ingår i: INMAT 2005. ; , s. 11-
  • Konferensbidrag (refereegranskat)abstract
    • The use of light weight materials is increasing at a rapid pace in the present day industry. Automobiles, aircrafts, ships and several other fields are increasingly finding large potential in using lighter materials for construction. In the past few years a number of water borne means of transportation have been moulded from composites. For ships, this leads to reducing the light weight and thus an increase in the capacity of the payload. A reduction in the light weight of the ship implies more cargo and more revenue generation for the ship owner. Over an average lifetime of 25 years, the amount of revenue generated could be significant, due to which a number of ship owners are giving a serious thought to the usage of light weight materials in shipping. Stena Line, a Swedish shipping company has a number of passenger ferries running in the European region. They are also the proud owners of the HSS series of ships, which are unique as they are catamarans made completely in aluminium. Being the pioneers in the shipping industry, they have considered the possibility of having a sandwich superstructure for one of their ferries, HSS 900. This paper looks into the preliminary design of the structure under DNV regulations. While fire safety is also part of the project, this paper focuses on the structure. Different kinds of fibres, resins and cores could be used for making the sandwich construction. The fibre making the faces could be E-glass, S-glass, carbon fibre etc, the resin systems also provide a variety of options like the polyesters, vinyl esters and phenolics. Similarly the core material could be honeycomb, PVC or PU. In this paper, possibilities of using these materials for the making the superstructure has been looked into. A preliminary calculation shows how much in terms of light weight of the vessel could be saved if sandwich construction is used. As it is weight critical approach that is the driving factor in using light weight materials, an optimization of the structure by breaking it up into sandwich panel, spacing of the transverses and longitudinal has also been performed. While optimizing the sandwich panel, four major criteria of maximum normal stress, maximum shear stress, wrinkling stress and maximum allowed deflection have been explored. The limit point where all the four requirements are met and the weight is minimum possible has been considered as the optimum point. All in all it is a sandwich superstructure, which has been optimized for weight.
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  • Resultat 1-3 av 3
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licentiatavhandling (1)
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refereegranskat (2)
övrigt vetenskapligt/konstnärligt (1)
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Ahuja, Gaurav, 1978 (3)
Ulfvarson, Anders, 1 ... (2)
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