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Titlebook: Offshore and Coastal Modelling; P. P. G. Dyke,A. O. Moscardini,E. H. Robson Book 1985 Springer Science+Business Media New York 1985 Meere.

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发表于 2025-3-21 17:23:47 | 显示全部楼层 |阅读模式
书目名称Offshore and Coastal Modelling
编辑P. P. G. Dyke,A. O. Moscardini,E. H. Robson
视频video
丛书名称Coastal and Estuarine Studies
图书封面Titlebook: Offshore and Coastal Modelling;  P. P. G. Dyke,A. O. Moscardini,E. H. Robson Book 1985 Springer Science+Business Media New York 1985 Meere.
描述The papers contained in this volume were presented orally at the seventh POLYMODEL conference, held at Sunderland Polytechnic in the United King­ dom in May 1984 and sponsored by Barclays Bank PLC and Imperial Chemical Industries Ltd. The conferences are organised annually by the North East of England Polytechnic‘s Mathematical Modelling and Computer Simulation Group - POLYMODEL. The Group is a non-profit making organisation based on the mathematics department of the three polytechnics in the region and has membership drawn from those educational institutions and from regional industry. Its objective is to promote research and collaboration in mathematical and computer-based modelling. After a short introductory chapter, the volume may be considered as dividing naturally into four parts. Chapters 2 to 5 constitute the first part on Tides, Storm Surges and Coastal Circulations which deals with the hydrodynamics of coastal seas. Chapters 6 to 11 concern Coastal Engine­ ering Modelling and discuss such coastal phenomena as beach erosion, sediment transport, and non-linear waves. The third part (Chapters 12 to 16) on Offshore Structures considers sea structures in general and the conne
出版日期Book 1985
关键词Meere; Meeresbiologie; Modelling; biology; chemistry; crevice; environment; wind
版次1
doihttps://doi.org/10.1007/978-1-4684-8001-6
isbn_softcover978-0-387-96054-8
isbn_ebook978-1-4684-8001-6Series ISSN 0724-5890
issn_series 0724-5890
copyrightSpringer Science+Business Media New York 1985
The information of publication is updating

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Modelling Storm Surge Current Structure, purposes has increased. The design of offshore structures has to take account of both the forces due to waves and those exerted by storm driven currents. In the case of storm currents, the current’s profile is a significant factor in calculating design forces. Storm induced currents are generally a
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Coastal Sediment Modelling,h modify nearshore water and wave movements will also modify the hydrodynamic forces applied to the sea bed sediments, and thereby modify sea bed topography. Unfortunately, the severity of the wave and current climate at a particular site is also influenced by the depth and orientation of the sea be
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Power Take-Off and Output from the Sea-Lanchester Clam Wave Energy Device,few devices which show enough promise to merit continued Government and industrial support within the now much reduced British wave energy research programme. With the loss of official interest in large scale generating stations, attention is now being focused on smaller devices for power supply to
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Modelling the Plan Shape of Shingle Beaches,ever, apart from the problems of scaling, physical models are generally too small to reproduce sufficiently long stretches of coast. With the recent development of mathematical models most problems dealing with beach plan shape changes are now dealt with numerically. Models dealing with sand beaches
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,Mathematical Model of a Marine Hose-String at a Buoy: Part 1 — Static Problem,mmon system is shown in Figure 13.1 and comprises of a floating buoy secured to the sea-bed by chains. The tanker’s hawser and the surface hose are connected to a turntable on top of the buoy in response to the prevailing wind, wave and current forces. The oil is transferred from the buoy to the sea
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