Morphodynamic Model for Predicting Beach Changes Based on Bagnold's Concept and Its Applications / / edited by Takaaki Uda.

The authors have developed models for predicting beach changes applicable to various problems on real coasts. One of them is the contour-line-change model to predict long-term beach changes caused by the imbalance in longshore sand transport, which is a kind of N-line model. Because the calculation...

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Place / Publishing House:London, United Kingdom : : IntechOpen,, 2018.
Year of Publication:2018
Language:English
Physical Description:1 online resource (208 pages) :; illustrations some color
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spelling Shiho Miyahara auth
Morphodynamic Model for Predicting Beach Changes Based on Bagnold's Concept and Its Applications / edited by Takaaki Uda.
IntechOpen 2018
London, United Kingdom : IntechOpen, 2018.
1 online resource (208 pages) : illustrations some color
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Description based on: online resource; title from PDF information screen (Intech, viewed October 21, 2022).
Includes bibliographical references.
The authors have developed models for predicting beach changes applicable to various problems on real coasts. One of them is the contour-line-change model to predict long-term beach changes caused by the imbalance in longshore sand transport, which is a kind of N-line model. Because the calculation of the nearshore current is not needed in this model, and the computational load is small, it has an advantage in the prediction of long-term topographic changes on an extensive coast. However, the handling of boundary conditions becomes difficult when offshore coastal structures are constructed in a complicated manner, and in this regard the so-called 3D model has an advantage. Taking this point into account, the authors developed a morphodynamic model (BG model) by applying the concept of the equilibrium slope and the energetics approach, in which depth changes on 2D horizontal grids are calculated.
English
Oceanography.
Sedimentation and deposition Mathematical models.
Life Sciences
Earth Science
Oceanography
Environmental Sciences
1-78984-945-4
Uda, Takaaki, editor.
language English
format eBook
author Shiho Miyahara
spellingShingle Shiho Miyahara
Morphodynamic Model for Predicting Beach Changes Based on Bagnold's Concept and Its Applications /
author_facet Shiho Miyahara
Uda, Takaaki,
author_variant s m sm
author2 Uda, Takaaki,
author2_variant t u tu
author2_role TeilnehmendeR
author_sort Shiho Miyahara
title Morphodynamic Model for Predicting Beach Changes Based on Bagnold's Concept and Its Applications /
title_full Morphodynamic Model for Predicting Beach Changes Based on Bagnold's Concept and Its Applications / edited by Takaaki Uda.
title_fullStr Morphodynamic Model for Predicting Beach Changes Based on Bagnold's Concept and Its Applications / edited by Takaaki Uda.
title_full_unstemmed Morphodynamic Model for Predicting Beach Changes Based on Bagnold's Concept and Its Applications / edited by Takaaki Uda.
title_auth Morphodynamic Model for Predicting Beach Changes Based on Bagnold's Concept and Its Applications /
title_new Morphodynamic Model for Predicting Beach Changes Based on Bagnold's Concept and Its Applications /
title_sort morphodynamic model for predicting beach changes based on bagnold's concept and its applications /
publisher IntechOpen
IntechOpen,
publishDate 2018
physical 1 online resource (208 pages) : illustrations some color
isbn 1-83881-268-7
1-78984-946-2
1-78984-945-4
callnumber-first G - Geography, Anthropology, Recreation
callnumber-subject GC - Oceanography
callnumber-label GC11
callnumber-sort GC 211.2 M677 42018
illustrated Illustrated
dewey-hundreds 500 - Science
dewey-tens 550 - Earth sciences & geology
dewey-ones 551 - Geology, hydrology & meteorology
dewey-full 551.457
dewey-sort 3551.457
dewey-raw 551.457
dewey-search 551.457
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