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Titlebook: Ocean Wave Modeling; The SWAMP Group Book 1985 Springer Science+Business Media New York 1985 Europe.carr.earthquake prediction.evolution.m

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发表于 2025-3-21 16:41:12 | 显示全部楼层 |阅读模式
书目名称Ocean Wave Modeling
编辑The SWAMP Group
视频video
图书封面Titlebook: Ocean Wave Modeling;  The SWAMP Group Book 1985 Springer Science+Business Media New York 1985 Europe.carr.earthquake prediction.evolution.m
描述Early in 1979, a group of wave researchers proposed a wave model inter­ comparison study to clarify the interrelations existing among the various wave models which have been developed in past years for real-time wave forecasting, wave statistics compilations, or hindcast case studies. The idea was immediately welcomed by the wave modeling community, and, finally, nine wave modeling groups from the United States, Japan, and Europe participated in the exercise. The principal results of this work are presented here jointly by the Sea Wave Modeling Project (swAMP) Group (the members of which are listed in Appendix A). Descriptions of the models used in the study are given in Part II of this volume. A more complete documentation of the entire set of numerical experiments is given in Part 2 of the Sea Wave Modeling Project (SWAMP group, 1982). The main purpose of the intercomparison study was to test our present understanding of the physics of . wind-generated surface waves from the viewpoint of wave modeling. Specifically, we wished to clarify the basic interdependence between understanding the physics of surface waves, repre­ senting the physics numerically, and predicting quantitative
出版日期Book 1985
关键词Europe; carr; earthquake prediction; evolution; modeling; modelling; ocean; research; statistics; swamp; wind
版次1
doihttps://doi.org/10.1007/978-1-4757-6055-2
isbn_softcover978-1-4757-6057-6
isbn_ebook978-1-4757-6055-2
copyrightSpringer Science+Business Media New York 1985
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978-1-4757-6057-6Springer Science+Business Media New York 1985
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Decoupled Propagation ModelsThe principal characteristics of the two DP models considered in this study (. and .) are listed in Table 4.1. Details and further references can be found in the model descriptions given in Part II. For both models, wave growth is strictly decoupled up to the saturation limit.
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Test Strategys of individual models reveals substantial differences, even between models of the same class. In addition, the numerical implementation varies significantly from one model class to another. This raises the following questions:
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Case II: Fetch- and Duration-Limited Growthrthogonally offshore. The wind field is infinite in the lateral and downstream directions. The initial wave energy at time . = 0 is zero, and the spectrum at the coastline . = 0 remains zero for . > 0. The models were run until a stationary state was reached for the entire area.
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Summaryompared for seven test cases designed to emphasize different features of the models. The study has provided a comprehensive view of the present state of wave modeling and has revealed a number of critical areas in which further work is necessary. The principal conclusions may be summarized as follows:
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The VENICE Model for Wind Wave Prediction-water applications. We will give here only a short description of the model, particularly the part concerned with shallow-water processes. These are not of interest in the actual study because of its deep-water assumption. Readers interested in the details of the model are referred to the paper quoted.
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