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21.
本研究旨在揭示九龙江口潮滩有机质含量及其来源的时空分异规律,寻找有效识别潮滩沉积环境的有机碳指标,以便更好地将有机碳应用于河口沉积微相识别和古环境研究。在九龙江口潮滩不同地貌单元,于夏季和冬季采集41个表层沉积物,进行粒度、总有机碳(TOC)、总氮(TN)和稳定碳同位素(δ13C)测试。结果显示:从高潮滩至低潮滩,沉积物粒度逐渐变粗,TOC、TN和C/N变小,δ13C值偏正。高潮滩有机质来源以陆源和红树林贡献为主,中潮滩以海源和互花米草贡献为主,低潮滩以海源贡献为主。九龙江口潮滩有机质的分布和来源受控于河口陆海相互作用的季节变化、潮滩沉积动力分异和潮滩植被分布。高潮滩与中–低潮滩之间,TOC存在显著性差异,TN、δ13C存在极显著性差异,因此参数组合TOC、TN和δ13C可作为高潮滩与中–低潮滩的有效判别指标。 相似文献
22.
泥沙运动作为水流和底床相互作用的纽带,是河流、河口及海岸工程研究的重要内容。在潮波作用明显的河口、海岸地区,周期性的动力作用下的泥沙运动具有往复和可逆的特征,因此研究这类水域的泥沙的净输运更具有实际的意义。基于泥沙输运和流速呈指数关系假设,建立潮流环境下的泥沙全沙净输运的解析解公式,并对该公式的计算结果和数值计算以及数学模型的结果进行了检验和验证,结果表明本研究提出的公式能较好地反应潮流环境下的泥沙净输运。由此,基于本公式采用潮流分潮调和常数可计算得到全沙净输运,并可以分析各分潮流及其相互作用与泥沙净输运的关系。研究结果显示,在受径流影响较大的半日潮河口,S2、MS4、M2三潮相互作用对全沙净输运的贡献显著高于通常的潮流不对称作用,即M2、M4的相互作用。此外,河口区域径流导致的余流对泥沙净输运的贡献不可忽略,特别是在洪季,大径流量条件下往往导致余流较大,其对泥沙净输运的贡献所占比例较大。 相似文献
23.
24.
曹妃甸填海工程阻断浅滩潮道初期老龙沟深槽的地形变化 总被引:1,自引:1,他引:1
通过研究1992、1997、2006年的测深资料,对比分析了横切老龙沟深槽口门处的地形横剖面和大致沿老龙沟深槽轴线的地形纵剖面,可知在此期间深槽内的水深有变浅和淤积的趋势。总体看来,老龙沟深槽的淤积厚度在0.61~4.8 m之间,并且老龙沟深槽轴线也有自东向西迁移的趋势。自2004年曹妃甸填海工程的通岛公路阻断浅滩潮道后,使老龙沟深槽内的潮流流量和流速减小,是引起老龙沟深槽内的水深变浅和淤积的主要原因。淤积可能主要发生在通岛公路阻断浅滩潮道后的初期即2004-2006年期间。该研究结果也证实了我们阻断浅滩潮道会引起老龙沟深槽淤积的推断。 相似文献
25.
本文对青岛—石臼所沿岸潮流特征进行了分析。实际观测资料表明,这一带潮流具有典型的往复流性质,并有较明显的不对称性和较大的垂直变化。文中指出涨落潮流不对称性是由于余流和分潮流影响的结果。讨论了不对称性随余流和分潮流的变化和潮流垂直梯度的特征。不对称和垂直梯度对泥沙运动和污染扩散的影响在文中也作了阐述。 相似文献
26.
南黄海辐射沙洲主要潮沟的变迁 总被引:6,自引:1,他引:6
黄海军 《海洋地质与第四纪地质》2004,24(2):1-8
利用1966年和1977年海图、1995年和2000年合成孔径雷达影像,结合1980年以来的陆地卫星影像和2000年的岸滩实测剖面资料对南黄海辐射沙洲区主要潮沟的位置进行了解译与分析,得出上述4个时期研究区内主要潮沟深泓线位置图。对不同时期潮沟深泓线位置图进行几何校准与叠加,对比潮沟深泓线的迁移。结果表明:潮沟具有往返周期性摆动的特点,短期摆动速度明显快于长期摆动,主沟槽最大变动速度达127m/a,而支沟槽变动速度更大。潮沟摆动与沙洲变化有明显的相关性,但两者间的关系较为复杂。辐射沙洲目前处于破碎、萎缩阶段,除沙洲中心及陆岸岸滩仍有淤积外,大部分沙洲处于侵蚀状况,同时沙洲有整体向陆迁移的趋势。 相似文献
27.
Kai-Wu Li 《地震学报(英文版)》1998,11(5):637-644
Studies by many scientists show that Hebei, China is an area with strong correlation between the tidal force and the occurrences
of major earthquakes, the Xingtai earthquake of 1966, the Hejian earthquake of 1967 and the Tangshan earthquake of 1976 were
triggered by the tidal force, in this paper the study on the common characteristics of their occurrence times confirms these
facts. The computed times of maximum horizontal of the semi diurnal solid tide tidal force show that the occurrence times
of the above mentioned earthquakes were close to the times of maximum horizontal tidal force of the semi diurnal solid tide
at new moon or full moon. The Longyao earthquake of M=6.8, the Ningjin earthquake of M=7.2 and the Hejian earthquake of M=6.3 occurred tens of minutes after the maximum horizontal tidal force of the semi diurnal solid tides, and the Tangshan earthquake
of M=7.8 occurred 16 minutes before the maximum horizontal tidal force. The tidal forces were directed to the west. This is their
temporal characteristic. It is generally accepted that the 1969 Bohai earthquake of M=7.4 and the 1975 Haicheng earthquake were not triggered by the tidal force. These events did not show such characteristics.
The temporal characteristics of the earthquakes indicate that the occurrences of these events were not random, but were controlled
by the tidal force from the sun and the moon, and triggered by the tidal force. These facts agree with the triggering mechanism
of the tidal force, are evidences of earthquakes triggered by tidal force. 相似文献
28.
The subaerial tidal sand area in the northern Jiangsu Province (Subei), stretching from Dongtai towards east with a fan shape,
is an early developing stage of radial sand ridges distributed in the South Yellow Sea. Since 5000–6000 a BP, after the Holocene
transgression maximum in the northern Jiangsu Province, subaqueous tidal sand bodies were exposed and changed into land gradually.
The environmental magnetism analysis shows that subaerial tidal sand strata are formed by the convergent-divergent paleo-tidal
current field. The sediment source of tidal sand strata came early from the Changjiang River and late from the Yellow River.
Sea floor erosion by tidal currents also served as an important sand source. Drilling cores and ground-penetrating profile
show that there exists no probability of sand supplying directly by a large river through the apical area of tidal sand ridges
either on land or in the sea. Fluvial deposits supplied the tidal sand bodies by alongshore transportation, which corresponds
to the conclusions obtained by the analyses of provenance and paleocurrent field.
Project supported by the National Natural Science Foundation of China (Grant Nos. 43236120 and 49676288). 相似文献
29.
The architecture of macrofaunal burrows and the total area of the sediment-water interface created by biogenic structure were
investigated in the Donggeomdo tidal flat on the west coast of Korea. Resin casting methods were applied to recover burrows
of four dominant species, Macrophthalmus japonicus, Cleistostoma dilatatum, Perinereis aibuhitensis, and Periserrula leucophryna,
and whole burrows within the casting area at three sites in different tidal levels.P. leucophryna excavated the largest burrow in terms of a surface area among them. In the case of whole burrow casting, the space occupied
by the biogenic structure was extended into deeper and expanded more greatly at the higher tidal level. In the uppermost flat,
the burrow wall surface area within sediment was more extensive than the sediment surface area. Increased oxygen supply through
the extended interface could enhance the degradation rates of organic carbon and also change the pathways of degradation.
Quantifying the relationship between the extended interface and mineralization rate and pathway requires more extensive study. 相似文献
30.
The moisture content ws of a beach surface strongly controls the availability of sand for aeolian transport. Our predictive capability of the spatiotemporal variability in ws, which depends to a large extent on water table depth, is, however, limited. Here we show that water table fluctuations and surface moisture content observed during a 10-day period on a medium-grained (365μm) planar (1:30) beach can be predicted well with the nonlinear Boussinesq equation extended to include run-up infiltration and a soil–water retention curve under the assumption of hydrostatic equilibrium. On the intertidal part of the beach the water table is observed and predicted to continuously fall from the moment the beach surface emerges from the falling tide to just before it is submerged by the incoming tide. We find that on the lower 30% of the intertidal beach the water table remains within 0.1–0.2 m from the surface and that the sand is always saturated (ws≈20%, by mass). Higher up on the intertidal beach, the surface can dry to about 5% when the water table has fallen to 0.4–0.5 m beneath the surface. Above the high-tide level the water table is always too deep (>0.5 m) to affect surface moisture and, without precipitation, the sand is dry (ws < 5 − 8%). Because the water table depth on the emerged part of the intertidal beach increases with time irrespective of whether the (ocean) tide falls or rises, we find no need to include hysteresis (wetting and drying) effects in the surface-moisture modelling. Model simulations suggest that at the present planar beach only the part well above mean sea level can dry sufficiently (ws < 10%) for sand to become available for aeolian transport. ©2018 The Authors. Earth Surface Processes and Landforms published by John Wiley & Sons Ltd. 相似文献