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Books > Professional & Technical > Other technologies > Marine engineering > General
For this second edition of the highly successful 'Dredging: A
Handbook for Engineers', Nick Bray and his co-authors have fully
updated and expanded the book which covers all aspects of modern
dredging including operating methods, outputs, costs, contracts and
the impact on the environment. Planning and implementing dredging
projects, including pre-contract works, is also well covered. The
book is generously illustrated with line drawings, photographs and
tables, and a useful bibliography appears at the end of each
chapter. This definitive handbook will prove invaluable to
engineers and managers alike, both as an initial introduction to
this specialised topic and as a reference for years to come.
Tristan Jones has logged more miles--and more adventure--sailing single-handed than any other person alive in our time. He has crossed the Atlantic many times, often alone, and has circumnavigated the globe in small boats. One Hand for Yourself, One for the Ship is a course on single-handed sailing by the man most qualified to give it. Tristan Jones offers his highly personal perspective on both the science and the art of this ultimate challenge. It is a book for every sailor, giving the novice and the experienced sailor alike invaluable information and advice simply and with humor. Rich with anecdote and detail, written as only Tristan Jones can write, this is the handbook to turn to when planning a trip and to refer to when sailing.
This book provides the information on boilers and the associated equipment, as used at sea, required by marine engineers taking the Steam Paper, Class Two, for the Department of Transport's Certificate of Competency for Marine Engineer Officers. Much of the information is given in the form of comprehensive answers to typical examination questions, with supporting diagrams that help the reader to understand and remember important machinery details. In this new edition the book has been updated throughout with new material on welded boilers, various types of water tube boiler, rotary air heater, water level alarm, consolidated type safety valve, hydraulic testing and various aspects of survey, maintenance and operational problems.
This book reports on findings at the intersection between two related fields, namely coastal hydrography and marine robotics. On one side, it shows how the exploration of the ocean can be performed by autonomous underwater vehicles; on the other side, it shows how some methods from hydrography can be implemented in the localization and navigation of such vehicles, e.g. for target identification or path finding. Partially based on contributions presented at the conference Quantitative Monitoring of Underwater Environment, MOQESM, held on October 11-12, 2016, Brest, France, this book includes carefully revised and extended chapters presented at the conference, together with original papers not related to the event. All in all, it provides readers with a snapshot of current methods for sonar track registration, multi-vehicles control, collective exploration of underwater environments, optimization of propulsion systems, among others. More than that, the book is aimed as source of inspiration and tool to promote further discussions and collaboration between hydrographers, robotic specialists and other related communities.
A collection of wiring diagrams for vintage marine motors produced from 1956-1989.
Pounder's Marine Diesel Engines and Gas Turbines, Tenth Edition, gives engineering cadets, marine engineers, ship operators and managers insights into currently available engines and auxiliary equipment and trends for the future. This new edition introduces new engine models that will be most commonly installed in ships over the next decade, as well as the latest legislation and pollutant emissions procedures. Since publication of the last edition in 2009, a number of emission control areas (ECAs) have been established by the International Maritime Organization (IMO) in which exhaust emissions are subject to even more stringent controls. In addition, there are now rules that affect new ships and their emission of CO2 measured as a product of cargo carried.
This book deals with a number of contentious issues in Chinese management as China emerges as a global economic player, with a greater role in international business during a global economic crisis. This step is in tandem with an economically driven foreign policy. Since the 1980s, Chinese management while still in transition, has benefited from an infusion of capital, technology and managerial expertise through inward direct investment via joint and wholly-owned foreign ventures. As the so-called 'workshop of the world', China and its exports, especially labour-intensive goods, face protectionism in the United States and the European Union. To circumvent these barriers, the Chinese leaders are emphasising domestic consumption, itself dependent on rising personal income levels and an improved national social insurance system, and a move to high-tech products, themselves requiring indigenous innovation. The creation of a knowledge economy, in addition to outward investment in manufacturing, could lead to a distinctive independent style of Chinese management. Simultaneously, China's participation in intra-regional trade underlines the nation's role in Asian regional business networks. Such developments in turn present a challenge to Western and global business. This book was published as a special issue of Asia Pacific Business Review.
By the end of the Napoleonic Wars, the seven home dockyards of the British Royal Navy employed a workforce of nearly 16,000 men and some women. On account of their size, dockyards add much to our understanding of developing social processes as they pioneered systems of recruitment, training and supervision of large-scale workforces. From 1815-1865 the make-up of those workforces changed with metal working skills replacing wood working skills as dockyards fully harnessed the use of steam and made the conversion from constructing ships of timber to those of iron. The impact on industrial relations and on the environment of the yards was enormous. Concentrating on the yard at Chatham, the book examines how the day-to-day running of a major centre of industrial production changed during this period of transition. The Admiralty decision to build at Chatham the Achilles, the first iron ship to be constructed in a royal dockyard, placed that yard at the forefront of technological change. Had Chatham failed to complete the task satisfactorily, the future of the royal dockyards might have been very different.
Water covers more than 70% of the Earth s surface, making maritime influences an important consideration in evaluating modern global economic systems. Therefore, the efficient design, operation, and management of maritime systems are important for sustainable marine technology development and green innovation. Marine Technology and Sustainable Development: Green Innovations examines theoretical frameworks and empirical research in the maritime industry, evaluating new technologies, methodologies, and practices against a backdrop of sustainability. This critical reference encourages the discussion and exploration of diverse opinions on the benefits and challenges of new marine technologies essential for marine and maritime professionals, researchers, and scholars hoping to improve their understanding of environmental considerations in preserving the world s oceanic resources."
The control of marine engines and propulsion plants is a field of increasing interest to the maritime industry. The author's participation in a number of closely related research projects together with practical shipboard experience allows Robust Control of Diesel Ship Propulsion to present a broad view of the needs and problems of the shipping industry in this area. The book covers a number of models and control types: An integrated nonlinear state-space model of the marine propulsion system is developed. This is based upon physical principles that incorporate uncertainties due to engine thermodynamics and disturbances due to propeller hydrodynamics. The model employs artificial neural nets for depicting the nonlinearities of the thermochemical processes of engine power/torque generation and the engine-turbocharger dynamical interaction; neural nets combine the required mathematical flexibility and formalism with numerical training and calibration options using either thermodynamic engine models or measured data series. The neural state-space model is decomposed appropriately to provide a linearised perturbation model suitable for controller synthesis. The proportional integral (derivative) control law is examined under the perspective of shaft speed regulation for enhanced disturbance rejection of the propeller load. The typical marine shafting system dynamics and configuration allow for a smart implementation of the D-term based on shaft torque feedback. Full-state feedback control is, examined for increased robustness of the compensated plant against parametric uncertainty and neglected dynamics. The H* requirements on the closed-loop transfer matrix are appropriately decomposed to similar ones on scalar transfer functions, which give specifications which are easier to manipulate. In effect, the methods are comparatively assessed and suggestions for extensions and practical applications are given. This synthetic approach to the propulsion plant control and operational problems should prove useful for both theoreticians and practitioners, and can be easily adopted for the control of other processes or systems outside the marine field, as well.
Proceedings of the IUTAM Symposium on Fluid- Structure Interaction in Ocean Engineering, held in Hamburg, July 23-26, 2007. The study of gravity driven water waves interacting with fixed or freely floating objects is an active and important field of research in ocean engineering. The accurate prediction of large amplitude ship motions or of marine structures in severe seas is still a delicate problem in the field of fluid-structure interaction. While three-dimensional panel methods have reached the state of maturity in linear sea-keeping analysis, the original problem, governed by strongly nonlinear boundary conditions, is far from being solved efficiently. The principal nonlinearities are associated with the variable wetted surface of the ship hull or the floating body and with the nonlinear hydrodynamic conditions on the free surface. Moreover, marine structures often must be modelled as multibody systems rather than a single body. This causes additional problems due to wave slamming on floating and fixed structures. Furthermore, problems such as coupled structural behavior of submerged or floating systems as well as various wind effects have to be considered for the proper design of offshore systems. This book collects contributions from leading scientists working
on the following topics: Ocean waves, probabilistic models of sea
waves, fluid-loading on structures including pipes, cables,
drill-strings etc., behavior of floating systems, stability and
capsizing of ships, coupled structural behavior, sloshing in tanks,
CFD validation and verification.
Maritime markets have shown strong global growth in recent years and are expected to grow further in the coming decades. Waterborne transport is economically and environmentally a highly sustainable mode of transport. Maritime Industry, Ocean Engineering and Coastal Resources brings together a selection of papers reflecting a number of fundamental areas of Ocean Engineering and Coastal Resources, such as Marine Environment, Ship and Offshore Design, Building and Maintenance Technology, Maritime Transportation, Port Operation and Exploitation, Offshore Oil and Gas Exploitation, Nautical Activities and Marinas, Fisheries and Aquaculture, Maritime Safety and Protection of the Environment. This book will be invaluable to professionals, scientists, and engineers working in Marine Technology and Engineering, Naval Architecture, Maritime Industry, Ocean Engineering and Coastal Resources.
The Arsenal Ship was the most innovative naval weapons concept of the late 20th Century: a stealthy vessel armed with 500 Vertical Launch System (VLS) tubes and manned by a crew of only 25 or 30 sailors, intended to rain precision-guided missiles on enemies from a safe distance; a "force multiplier" that was seen as an integral part of the Revolution in Military Affairs. The arsenal ship fascinated military thinkers in the mid-90s, although there was spirited debate over the wisdom of putting so many eggs in one lightly defended basket. Would it have worked? Read the detailed contemporary analysis and judge for yourself. An essential reference for any library on modern navies. Contents include: An Arsenal Ship Design. Baumann, G. et al. Naval Postgraduate School, Monterey. 1996. A Proposed Littoral Dominant Battle Group Centered Around the Arsenal Ship. Looney, John P. et al. Marine Corps Combat Development Command, Quantico, 1997. The Arsenal Ship and the U.S. Navy: A Revolution in Military Affairs Perspective. Driesbach, Dawn H. Naval Postgraduate School, Monterey. 1996. Can the Arsenal Ship Replace the Battleship? Lance, Joseph M, III. Army Command And General Staff College, Fort Leavenworth. 1996. The Arsenal Ship Measures up to Joint Vision 2010. Abramson, Alan J. Naval War College, Newport. 1997. Tradeoff Analysis Model for Arsenal Ship Survivability and Sustainability: Bush, Ronald S Cimiluca, Arthur E, Jr. Naval Postgraduate School, Monterey. 1996. The Arsenal Ship Concept: Vulnerabilities to Special Operations. Dunbar, Christian A. Pietrantoni, Dino. Naval Postgraduate School, Monterey. 1997. Arsenal Ship Automation and Manning Analysis. McNerney, Thomas E, III. Naval Postgraduate School, Monterey. 1997. DARPA Arsenal Ship Lessons Learned. Hamilton, Charles S. DARPA, Washington, DC. 1997. |
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