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441.
We develop techniques of numerical wave generation in the time-dependent extended mild-slope equations of Suh et al. [1997. Time-dependent equations for wave propagation on rapidly varying topography. Coastal Engineering 32, 91–117] and Lee et al. [2003. Extended mild-slope equation for random waves. Coastal Engineering 48, 277–287] for random waves using a source function method. Numerical results for both regular and irregular waves in one and two horizontal dimensions show that the wave heights and the frequency spectra are properly reproduced. The waves that pass through the wave generation region do not cause any numerical disturbances, showing usefulness of the source function method in avoiding re-reflection problems at the offshore boundary. 相似文献
442.
尝试性地将南黄海灾害地质因素分为4大类。同时参考地貌沉积界线和其他因素将南黄海分成4个灾害地质区:即海岸带、苏北浅滩、海州湾和南黄海东部灾害地质区,并时各灾害地质区进行了定性评价,苏北浅滩灾害地质区是研究区内灾害地质环境最不稳定的区域。 相似文献
443.
南海天然气水合物的形成和分布 总被引:17,自引:0,他引:17
姚伯初 《海洋地质与第四纪地质》2005,25(2):81-90
从物理海洋、古气候、沉积环境和构造环境分析入手,研究了南海天然气水合物的形成条件。研究结果表明,在整个南海海域,天然气水合物生成的条件是存在差别的。南海,东北部,在氧同位素2、4、6期,由于菲律宾海的高盐度海水的注入,使这里的生物生产率特别高,陆坡上沉积了丰富的有机物质,加上此期间该处的沉积速率高,为天然气水合物的生成提供了物质条件;另外,自中新世末以来,由于菲律宾海板块与欧亚板块在台湾地区发生碰撞,对南海北部产生北西向挤压,加快了流体在沉积物中的活动,为天然气水合物的生成提供了良好的构造环境。因此认为南海东北部陆坡应是南海天然气水合物最丰富的地区。 相似文献
444.
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446.
山东近海牙鲆(Paralichthys olivaceus)自然和养殖群体10个微卫星基因座位的遗传多态性分析 总被引:26,自引:7,他引:26
采用微卫星遗传标记技术对山东近海牙鲆自然群体和养殖群体的遗传多样性进行了研究。实验所用牙鲆于2003年5月分别采自山东近海和青岛胶南养鱼场,各20尾,取全血或肌肉组织,以酚-仿抽提方法提取基因组DNA,利用筛选获得的10对微卫星引物进行PCR扩增,反应产物经8%非变性聚丙烯酰胺凝胶电泳分离、EB显色,用ImageMasterl D Elite(Version 3.01)软件分析电泳结果,并计算了相应的遗传学参数。结果表明,在自然和养殖群体中,10个基因座位的等位基因平均数(α)分别为6.7和6.1,每个基因座位有效等位基因数(αe)分别为1.8—6.8和2.5—6.7,群体平均杂合度(H)分别为0.8120和0.7310;两个群体间的遗传相似性系数、遗传距离和基因分化系数为0.8558、0.1557和0.0558;自然群体内每个座位上的多态信息含量(PIC)为0.59—0.84、个体识别率(DP)为0.54—0.86、非父排除率(PPE)为0.41—0.72,其累积个体识别率和非父排除率均达到0.9999,表明所选座位属中高识别力的遗传标记,可以将它们应用于今后牙鲆雌核发育群体的遗传变异分析以及进一步的遗传育种的研究中。 相似文献
447.
The Agulhas Ridge is a prominent topographic feature that parallels the Agulhas-Falkland Fracture Zone (AFFZ). Seismic reflection
and wide angle/refraction data have led to the classification of this feature as a transverse ridge. Changes in spreading
rate and direction associated with ridge jumps, combined with asymmetric spreading within the Agulhas Basin, modified the
stress field across the fracture zone. Moreover, passing the Agulhas Ridge’s location between 80 and 69 Ma, the Bouvet and
Shona Hotspots may have supplied excess material to this part of the AFFZ thus altering the ridge’s structure. The low crustal
velocities and overthickened crust of the northern Agulhas Ridge segment indicate a possible continental affinity that suggests
it may be formed by a small continental sliver, which was severed off the Maurice Ewing Bank during the opening of the South
Atlantic. In early Oligocene times the Agulhas Ridge was tectono-magmatically reactivated, as documented by the presence of
basement highs disturbing and disrupting the sedimentary column in the Cape Basin. We consider the Discovery Hotspot, which
distributes plume material southwards across the AAFZ, as a source for the magmatic material. 相似文献
448.
A three-dimensional fixed offshore platform in deep water modeled by the finite element method is studied in this paper. Analysis of the dynamic response of the MDOF structure is realized taking the non-linearity of the wave drag force and the wave-structure interaction into account. The structural response statistics, which have Gaussian distributions, are used to evaluate the vibration effect of the structure without TMD and with TMD. And an optimal method to design TMD controlling the first mode of the multi-mode structure is proposed. Moreover, the probabilities of occurrence of sea states at the platform site are considered for prediction of the long-term effect of a TMD. Simulation results demonstrate that the long-term effect of a well-designed TMD is good and the practical use is possible due to the good stability of its optimal parameters under different sea states. 相似文献
449.
450.
Abstract. The major changes within the concepts of marine ecology are investigated, with the aim to design this new journal's scientific format. Four phases of marine sciences are distinguished: the phase of seafarers, of oceanographic expeditions, of marine stations, and of field research. The changes in the latter two are discussed in detail. The changes are described as occurring along three axes. First, as a movement towards the object; accomplished by fieldwork, scientific diving, remote controlled equipment, and by underwater experimentation. Second, the cooperation between several disciplines that led towards bridging gaps. And lastly, how the discovery of unifying principles in ecology (the development of an ecological theory) led the approach in marine ecology towards increasing complexity. 相似文献