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Titlebook: Ocean Resources; Volume II Subsea Wor Dennis A. Ardus,Michael A. Champ Book 1990 Springer Science+Business Media Dordrecht 1990 environment

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書目名稱Ocean Resources
副標(biāo)題Volume II Subsea Wor
編輯Dennis A. Ardus,Michael A. Champ
視頻videohttp://file.papertrans.cn/701/700502/700502.mp4
圖書封面Titlebook: Ocean Resources; Volume II Subsea Wor Dennis A. Ardus,Michael A. Champ Book 1990 Springer Science+Business Media Dordrecht 1990 environment
描述Ocean engineering is generally considered to be concerned with studies on the effects of the ocean on the land and with the design, construction and operation of vehicles, structures and systems for use in the ocean or marine environment. The practice of engineering differs from that of science in both motivations and objectives. Science seeks understanding of the principles of nature in terms of generalizations expressed as laws and classifications. Engineering seeks the application of knowledge of the physical and natural world to produce a benefit expressed as a device, system, material, and/or process. From the standpoint of the financial sponsors of an engineering project, the ideal approach is one of minimal risk in which only proven knowledge, materials and procedures are employed. There is frequent departure from this ideal in anticipation of the increased benefit expected from a large increase in performance of a structure or device. The process of acquiring this new capability is engineering research. Historically, ocean engineering developed with the application of engineering principles and processes to the design of ships and, later, to the machinery that propels them.
出版日期Book 1990
關(guān)鍵詞environment; hydrodynamics; marine; ocean; hydrogeology
版次1
doihttps://doi.org/10.1007/978-94-009-2133-7
isbn_softcover978-94-010-7460-5
isbn_ebook978-94-009-2133-7
copyrightSpringer Science+Business Media Dordrecht 1990
The information of publication is updating

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Underwater Acoustics for Submersiblesexploration, and the introduction of submarine cargo ships or oil tankers. Measures must be considered for locating hazards and avoiding accidents. To this end, a better understanding of how sound propagates in the ocean is not only useful but actually necessary.
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Automated Processing and Interpretation of Sensory Data for Deep Ocean Resource Developmentfor survey purposes, together with the knowledge-based interpretation of these acoustic images. The role of a knowledge based system in automated data interpretation is described, along with one knowledge based system architecture (the blackboard system) which has successfully been used when processing sector scan sonar images.
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tion and operation of vehicles, structures and systems for use in the ocean or marine environment. The practice of engineering differs from that of science in both motivations and objectives. Science seeks understanding of the principles of nature in terms of generalizations expressed as laws and cl
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Advances in Marine Robotics Technologies — Strategic Applications and Programsea scientific, military and industrial applications. Development programs in Japan, the United States, Canada and Europe that are the most potentially supportive of the technology in each of these areas are discussed.
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Features of Beamsteering and Equalization when Applied to Hydroacoustic Communicationigh (>10 kbits/s). Multipath interference due to reflections from the sea surface, the bottom or obstacles within the insonified water volume is likely to corrupt most attempts for hydroacoustic data transmission.
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