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Sound propagation through the stocha...
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Colosi, John A.
Sound propagation through the stochastic ocean[electronic resource] /
紀錄類型:
書目-電子資源 : Monograph/item
杜威分類號:
620.25
書名/作者:
Sound propagation through the stochastic ocean/ John A. Colosi.
作者:
Colosi, John A.
出版者:
New York : : Cambridge University Press,, 2016.
面頁冊數:
xxi, 420 p. : : ill., digital ;; 24 cm.
標題:
Underwater acoustics.
標題:
Sound - Transmission.
標題:
Oceanography.
ISBN:
9781139680417
ISBN:
9781107072343
摘要、提要註:
The ocean is opaque to electromagnetic radiation and transparent to low frequency sound, so acoustical methodologies are an important tool for sensing the undersea world. Stochastic sound-speed fluctuations in the ocean, such as those caused by internal waves, result in a progressive randomisation of acoustic signals as they traverse the ocean environment. This signal randomisation imposes a limit to the effectiveness of ocean acoustic remote sensing, navigation and communication. Sound Propagation through the Stochastic Ocean provides a comprehensive treatment of developments in the field of statistical ocean acoustics over the last 35 years. This will be of fundamental interest to oceanographers, marine biologists, geophysicists, engineers, applied mathematicians, and physicists. Key discoveries in topics such as internal waves, ray chaos, Feynman path integrals, and mode transport theory are addressed with illustrations from ocean observations. The topics are presented at an approachable level for advanced students and seasoned researchers alike.
電子資源:
https://doi.org/10.1017/CBO9781139680417
Sound propagation through the stochastic ocean[electronic resource] /
Colosi, John A.
Sound propagation through the stochastic ocean
[electronic resource] /John A. Colosi. - New York :Cambridge University Press,2016. - xxi, 420 p. :ill., digital ;24 cm.
The ocean is opaque to electromagnetic radiation and transparent to low frequency sound, so acoustical methodologies are an important tool for sensing the undersea world. Stochastic sound-speed fluctuations in the ocean, such as those caused by internal waves, result in a progressive randomisation of acoustic signals as they traverse the ocean environment. This signal randomisation imposes a limit to the effectiveness of ocean acoustic remote sensing, navigation and communication. Sound Propagation through the Stochastic Ocean provides a comprehensive treatment of developments in the field of statistical ocean acoustics over the last 35 years. This will be of fundamental interest to oceanographers, marine biologists, geophysicists, engineers, applied mathematicians, and physicists. Key discoveries in topics such as internal waves, ray chaos, Feynman path integrals, and mode transport theory are addressed with illustrations from ocean observations. The topics are presented at an approachable level for advanced students and seasoned researchers alike.
ISBN: 9781139680417Subjects--Topical Terms:
467289
Underwater acoustics.
LC Class. No.: QC242.2 / .C646 2016
Dewey Class. No.: 620.25
Sound propagation through the stochastic ocean[electronic resource] /
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The ocean is opaque to electromagnetic radiation and transparent to low frequency sound, so acoustical methodologies are an important tool for sensing the undersea world. Stochastic sound-speed fluctuations in the ocean, such as those caused by internal waves, result in a progressive randomisation of acoustic signals as they traverse the ocean environment. This signal randomisation imposes a limit to the effectiveness of ocean acoustic remote sensing, navigation and communication. Sound Propagation through the Stochastic Ocean provides a comprehensive treatment of developments in the field of statistical ocean acoustics over the last 35 years. This will be of fundamental interest to oceanographers, marine biologists, geophysicists, engineers, applied mathematicians, and physicists. Key discoveries in topics such as internal waves, ray chaos, Feynman path integrals, and mode transport theory are addressed with illustrations from ocean observations. The topics are presented at an approachable level for advanced students and seasoned researchers alike.
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https://doi.org/10.1017/CBO9781139680417
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