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Nonlinear interactions between large waves and freely floating bodies are investigated by a 2D fully nonlinear numerical wave tank (NWT). The fully nonlinear 2D NWT is developed based on the potential theory, MEL/material-node time-marching approach, and boundary element method (BEM). A robust and stable 4th-order Runge–Kutta fully updated time-integration scheme is used with regriding (every time step) and smoothing (every five steps). A special φn-η type numerical beach on the free surface is developed to minimize wave reflection from end-wall and wave maker. The acceleration-potential formulation and direct mode-decomposition method are used for calculating the time derivative of velocity potential. The indirect mode-decomposition method is also independently developed for cross-checking. The present fully nonlinear simulations for a 2D freely floating barge are compared with the corresponding linear results, Nojiri and Murayama’s (Trans. West-Jpn. Soc. Nav. Archit. 51 (1975)) experimental results, and Tanizawa and Minami’s (Abstract for the 6th Symposium on Nonlinear and Free-surface Flow, 1998) fully nonlinear simulation results. It is shown that the fully nonlinear results converge to the corresponding linear results as incident wave heights decrease. A noticeable discrepancy between linear and fully nonlinear simulations is observed near the resonance area, where the second and third harmonic sway forces are even bigger than the first harmonic component causing highly nonlinear features in sway time series. The surprisingly large second harmonic heave forces in short waves are also successfully reproduced. The fully updated time-marching scheme is found to be much more robust than the frozen-coefficient method in fully nonlinear simulations with floating bodies. To compare the role of free-surface and body-surface nonlinearities, the body-nonlinear-only case with linearized free-surface condition was separately developed and simulated.  相似文献   
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0102号台风"飞燕"移动路径特点的分析   总被引:2,自引:0,他引:2  
刘爱鸣  林毅  李泓浩 《台湾海峡》2003,22(1):102-107
2001年2号台风“飞燕”登陆早、强度大、移速快、突发性强给福建中部沿海地区带来巨大损失。本文利用常规资料及云图等资料对其登陆福建及后期路径北折的特点及成因进行分析,结果表明:200hPa散度、850hPa涡度及低层能量场对台风路径北折有比较好的预示作用,台风未来移向有沿着200hPa其中心附近辐散中心长轴方向、850hPa正涡度长轴方向及低层暖平流区和850hPa θse高能中心轴移动的趋势。  相似文献   
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台湾海峡海洋捕捞业管理策略和投资方向   总被引:1,自引:0,他引:1  
戴天元 《台湾海峡》1997,16(2):239-244
本文收集了1985 ̄1994年福建省在台湾海峡生产的具有代表性的50对拖网渔船、120艘单拖渔船、48组灯光围网渔船、38对大围缯渔船、31艘定置网渔船的技术参数及生产资料,计算并分析了其适正捕捞力量、经济指标,得出了一些有益的结论:(1)根据台湾海峡渔业资源,把握正确的投资方向,已成为进一步发展海洋捕捞业的关键。(2)由于台湾海峡的渔业资源正遭受越来越大的压力,为了保护渔业资源,应当限制捕捞力量  相似文献   
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- The variation of the amplitude of waves with varying incident angles when waves propagate through a typical approach channel is discussed by a numerical calculation method, the result of which shows that the influence of the channel on wave propagation is obvious. When the wave propagation direction is in coincidence with the channel axis, the wave amplitude ratio will decrease with the increase of propagation distance. When the incident angle is 15 - 30 , there appears an area of larger wave amplitude ratio on the side slope facing the waves, but at the another side, the wave amplitude ratio is generally small, indicating that the channel has a shielding effect. When waves propagate across the channel perpendicularly, the wave amplitude ratio can be calculated with the shallow water coefficient.  相似文献   
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We investigate the effect of the temperature–size rule upon zooids of the tropical American bryozoan Cupuladria exfragminis. Results show that mean zooid length, zooid width and zooid area vary significantly between clonal replicates of C. exfragminis kept under different controlled temperature conditions. Significantly larger zooids are produced during times of lowered water temperature that are comparable with the temperatures that occur during seasonal upwelling along the Pacific coast of Panama where the animal lives in abundance. Interpolation of data suggests that a drop of 1 °C causes a 5% increase in zooid size, and that almost all variation in zooid size in natural populations can be explained by temperature. Results are discussed in context of the potential use of zooid size variation in cupuladriid bryozoans to measure the strength of seasonal upwelling in ancient seas by analysing zooid size changes in fossil colonies. The technique of cloning cupuladriid colonies by fragmentation is also discussed with reference to its benefits in experimental studies where genotypes need to be controlled or replicated.  相似文献   
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