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Now in its 17th year, The Mariner's Book of Days is an ever-growing encyclopedia of nautical fact, fiction, and folklore, and has been hailed as the best, most entertaining nautical desk diary and calendar to see print. An invaluable reference, each annual edition is completely different from its predecessors, and all have become collector's items. On every right-hand page is a week of days, with the nautical significance of each explored in brief by the author. On each left-hand page is a collection of nautical miscellany evoking the rich traditions of the sea. Entertaining and informative, illustrated with a variety of lovely etchings, engravings, sketches, and watercolors, The Mariner's Book of Days takes readers on a 365-day voyage through history.
This book addresses various aspects of ship construction, from ship types and construction materials, to welding technologies and accuracy control. The contents of the book are logically organized and divided into twenty-one chapters. The book covers structural arrangement with longitudinal and transverse framing systems based on the service load, and explains basic structural elements like hatch side girders, hatch end beams, stringers, etc. along with structural subassemblies like floors, bulkheads, inner bottom, decks and shells. It presents in detail double bottom construction, wing tanks & duct keels, fore & aft end structures, etc., together with necessary illustrations. The midship sections of various ship types are introduced, together with structural continuity and alignment in ship structures. With regard to construction materials, the book discusses steel, aluminum alloys and fiber reinforced composites. Various methods of steel material preparation are discussed, and plate cutting and forming of plates and sections are explained. The concept of line heating for plate bending is introduced.Welding power source characteristics, metal transfer mechanisms, welding parameters and their effects on the fusion zone, weld deposit, and weld bead profile are discussed in detail. Various fusion welding methods, MMAW, GMAW, SAW, Electroslag welding and Electrogas welding and single side welding are explained in detail. Friction stir welding as one of the key methods of solid state welding as applied to aluminum alloys is also addressed. The mechanisms of residual stress formation and distortion are explained in connection with stiffened panel fabrication, with an emphasis on weld induced buckling of thin panels. Further, the basic principles of distortion prevention, in-process distortion control and mitigation techniques like heat sinking, thermo-mechanical tensioning etc. are dealt with in detail. In its final section, the book describes in detail various types of weld defects that are likely to occur, together with their causes and remedial measures. The nondestructive testing methods that are most relevant to ship construction are explained. Lastly, a chapter on accuracy control based on statistical principles is included, addressing the need for a suitable mechanism to gauge the ranges of variations so that one can quantitatively target the end product accuracy.
The U.S. shipbuilding industry now confronts grave challenges in providing essential support of national objectives. With recent emphasis on renewal of the U.S. naval fleet, followed by the defense builddown, U.S. shipbuilders have fallen far behind in commercial ship construction, and face powerful new competition from abroad. This book examines ways to reestablish the U.S. industry, to provide a technology base and R&D infrastructure sustaining both commercial and military goals. Comparing U.S. and foreign shipbuilders in four technological areas, the authors find that U.S. builders lag most severely in business process technologies, and in technologies of new products and materials. New advances in system technologies, such as simulation, are also needed, as are continuing developments in shipyard production technologies. The report identifies roles that various government agencies, academia, and, especially, industry itself must play for the U.S. shipbuilding industry to attempt a turnaround.
The ever-growing demand for commercial activities at sea has meant that ships are rapidly developing and that the rules governing their construction and operation are changing. Practical Ship Design records these changes, their outcomes and the reasoning behind them. It deals with every aspect of ship design and handles a wide range of both merchant ships and naval ships with authority. It provides coverage of cargo ships and passenger ships, tugs, dredgers and other service craft. It also includes concept design, detail design, structural design, hydrodynamics design, the effect of regulations, the preparation of specifications and matters of costs and economics. Drawing on the author's extensive practical experience, Practical Ship Design is likely to interest everybody involved in the design, construction, repair and operation of ships. Students and the most experienced professionals will all benefit from the book's vast store of design data and its conclusions and recommendations.
In General Naval Tactics, Naval War College professor and renowned tactical expert Milan Vego describes and explains those aspects of naval tactics most closely related to the human factor. Specifically, he explains in some detail the objectives and methods/elements of tactical employment of naval forces, command and control, combat support, tactical design, decision-making and planning/execution, leadership, doctrine, and training. Vego derives certain commonalities of naval tactics that occurred in recent and distant wars at sea. Many parts of his theoretical constructs are based on works of a number of well-known and influential naval theoreticians such as Admirals Alfred T. Mahan, Bradley A. Fiske, Raoul Castex, and René Daveluy.and influential naval theoreticians. Whenever possible, the author illustrates each aspect of theory by carefully selected examples from naval history--making the theory more understandable and interesting. Vego aims to present theory that is general in nature and therefore, more durable in its validity. The more general the theory, the greater the possibility of accommodating changes based on new interpretations of past events and as a result of gaining fresh insight from the lessons learned.