Model Numeris Transformasi Gelombang

Wave power plant uses the wave energy in certain locations where the wave energy is in the high level state. Because of that, wave transformations and breaking waves play significant role. This paper presents a numerical model on the wave transformation. The numerical model was solved using Airy wav...

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Main Author: Perpustakaan UGM, i-lib
Format: Article
Published: [Yogyakarta] : Department of Chemistry Gadjah Mada University 2000
Subjects:
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author Perpustakaan UGM, i-lib
author_facet Perpustakaan UGM, i-lib
author_sort Perpustakaan UGM, i-lib
collection UGM
description Wave power plant uses the wave energy in certain locations where the wave energy is in the high level state. Because of that, wave transformations and breaking waves play significant role. This paper presents a numerical model on the wave transformation. The numerical model was solved using Airy wave theory, modified Ebersole et.al. approach, and the finite difference method. The numerical model is able to give reasonable patterns of the wave transformation. The model can be used as a tool in predicting a suitable location for a wave power plant module. Yet, there are still discrepancies between the result predicted by the model and the wave height prototype, especially in a region around a breaking point. The discrepancies are probably caused by weakness of Ebersole et.al. approach in responding bar shaped bottom profile and great turbulence occurs right after the breaking process, weakness of the breaking criteria in modeling the real breaking process, and the use of several empirical coefficients.
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spelling oai:generic.eprints.org:203832014-06-18T00:34:06Z https://repository.ugm.ac.id/20383/ Model Numeris Transformasi Gelombang Perpustakaan UGM, i-lib Jurnal i-lib UGM Wave power plant uses the wave energy in certain locations where the wave energy is in the high level state. Because of that, wave transformations and breaking waves play significant role. This paper presents a numerical model on the wave transformation. The numerical model was solved using Airy wave theory, modified Ebersole et.al. approach, and the finite difference method. The numerical model is able to give reasonable patterns of the wave transformation. The model can be used as a tool in predicting a suitable location for a wave power plant module. Yet, there are still discrepancies between the result predicted by the model and the wave height prototype, especially in a region around a breaking point. The discrepancies are probably caused by weakness of Ebersole et.al. approach in responding bar shaped bottom profile and great turbulence occurs right after the breaking process, weakness of the breaking criteria in modeling the real breaking process, and the use of several empirical coefficients. [Yogyakarta] : Department of Chemistry Gadjah Mada University 2000 Article NonPeerReviewed Perpustakaan UGM, i-lib (2000) Model Numeris Transformasi Gelombang. Jurnal i-lib UGM. http://i-lib.ugm.ac.id/jurnal/download.php?dataId=3233
spellingShingle Jurnal i-lib UGM
Perpustakaan UGM, i-lib
Model Numeris Transformasi Gelombang
title Model Numeris Transformasi Gelombang
title_full Model Numeris Transformasi Gelombang
title_fullStr Model Numeris Transformasi Gelombang
title_full_unstemmed Model Numeris Transformasi Gelombang
title_short Model Numeris Transformasi Gelombang
title_sort model numeris transformasi gelombang
topic Jurnal i-lib UGM
work_keys_str_mv AT perpustakaanugmilib modelnumeristransformasigelombang