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山脉地形对热带风暴Fitow结构和运动影响的数值试验 被引量:27
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作者 段丽 陈联寿 徐祥德 《气象学报》 CAS CSCD 北大核心 2006年第2期186-193,i0002,共9页
热带风暴自东向西穿越琼州海峡时常常与海南西部的强天气相对应,尤其当风暴中心在海峡中部或海峡西端出口处有向西南方向的偏折时。Fitow(0114)是这类热带风暴的一个典型。通过对Fitow热带风暴的研究和分析,揭示了一个事实:Fitow在沿海... 热带风暴自东向西穿越琼州海峡时常常与海南西部的强天气相对应,尤其当风暴中心在海峡中部或海峡西端出口处有向西南方向的偏折时。Fitow(0114)是这类热带风暴的一个典型。通过对Fitow热带风暴的研究和分析,揭示了一个事实:Fitow在沿海峡西行过程中,其外围中尺度结构发生明显变化———风暴中心西南象限有一个中尺度对流(MCS)小涡生成和发展。受到这个诱生MCS小涡的“吸引”,Fitow在穿行海南岛北部和琼州海峡时,路径向西南方向偏折。数值模拟结果表明,海南岛中部的五指山地形对Fitow自东向西穿行海峡时的这种结构变化有显著影响:(1)当热带风暴Fitow(0114)自东向西穿过岛屿北部和琼州海峡时,其外围西北气流与山脉的辐合地带往往会诱生出中尺度强对流涡旋系统(MCS)。这种系统经过尺度分离和滤波处理后便会在山脉西北麓显现出来。(2)MCS小涡只生成在地形高度之下的大气层;地形高度之上并不显现这一小涡。用0高度作敏感试验的结果,在相同位置并不生成这种MCS小涡。(3)诱生小涡(MCS)的存在,对Fitow会产生“吸引”作用,使其向西南方向MCS所在处偏折。且MCS越深厚,维持时间越长,对Fitow中心的“吸引”程度越大,其中心向西南方向的偏折和移动越明显。0.0 km高度无MCS小涡时,Fitow中心并无这种偏折,而是向西北方向移动,在雷州半岛登陆。 展开更多
关键词 热带风暴 中尺度结构 海南地形.
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精化大地水准面中的几个问题 被引量:6
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作者 张赤军 《地壳形变与地震》 CSCD 1997年第1期34-38,共5页
根据近年来精化大地水准面的研究结果,对人们比较关心的5个方面的问题加以综述和探讨:(1)大地水准面的定义;(2)精化大地水准面的作用;(3)由似大地水准面改化为大地水准面;(4)海面地形对大地水准面的影响及其改正;
关键词 大地水准面 高程异常 海南地形 水准测量
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Modern movement and deformation in the South China Sea shown by GPS measurements and numerical simulation
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作者 王静 栾锡武 虞子冶 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2013年第1期159-168,共10页
To better understand the crustal deformation of the South China Sea Basin, we produce a mechanically consistent 2-dimensional model for observing regional velocity field in the South China Sea (SCS). We studied the do... To better understand the crustal deformation of the South China Sea Basin, we produce a mechanically consistent 2-dimensional model for observing regional velocity field in the South China Sea (SCS). We studied the dominating regional tectonic stress field by geodetic measurements and finite element analysis, the spatial variations of velocity field and strain field, and relative movements among different blocks, using a 2-dimensional model describing crustal deformation of the South China Sea Basin. Strain results show that the SCS is extending at present. The western part of SCS is opening gradually in NW- SE direction from its northern margin to the south, but the eastern part of SCS is opening gradually from its central part to the north and south. In addition, we analyzed the plate kinematics to the deformation of the SCS, using a two-dimensional finite element model. Our simulations results are well explained by available geodetic data. The movement of SCS is resulted from interactions among Indian Plate, Pacific Plate, Philippine Sea Plate, and Eurasian Plate. 展开更多
关键词 stress field DEFORMATION mechanical model
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The Taxonomic Status of Japanese Threadfin Bream Nemipterus japonicus(Bloch, 1791)(Perciformes: Nemipteridae) with a Redescription of this Species from the South China Sea Based on Morphology and DNA Barcodes
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作者 NING Ping SHA Zhongli +1 位作者 Paul D. N. HEBERT Barry RUSSELL 《Journal of Ocean University of China》 SCIE CAS 2015年第1期178-184,共7页
Because of its importance as a food source, Nemipterus japonicus (Bloch, 1791) (Nemipteridae) or Japanese threadfin bream is the best studied of these taxa, and numerous investigations have examined its fisheries,... Because of its importance as a food source, Nemipterus japonicus (Bloch, 1791) (Nemipteridae) or Japanese threadfin bream is the best studied of these taxa, and numerous investigations have examined its fisheries, its biology and biochemistry. De- spite such intensive work, the taxonomic status of N. japonicus has never been seriously questioned and it is regarded as a common species, widely distributed throughout the Indo-Westem Pacific Ocean. In fact, Bloch's description of the type specimen of N.ja- ponicus has ambiguous collection data and lacks a designation for the type locality, though it is probably Java. In this paper, DNA barcode results based on COl gene support the existence of two geographically separated lineages of the Japanese threadfin bream, both being an Indian Ocean and western Pacific lineage, with 2.7% sequence divergence, and the results indicate a possible existing of some cryptic species. The two lineages also possess a diagnostic difference in their belly color, with specimens in the South China Sea having a silver belly, while those from the Indian Ocean isolate specimen have a yellow coloration. Based upon new collections from the South China Sea, this species from the western Pacific is morphologically redescribed and its details of DNA barcode diver- sity are shown for the future investigations. 展开更多
关键词 South China Sea Indian Sea Indo-Pacific Barrier COI gene
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Hydro-hypsometric analysis of tropical river basins,Southwest Coast of India using geospatial technology
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作者 Gopinath GIRISH Ambili Gopalan KAMALAMMA +1 位作者 N P JESIYA Kuriachan LEMOON 《Journal of Mountain Science》 SCIE CSCD 2016年第5期939-946,共8页
The key aspect in planning and management of water resources is to analyze the runoff potential and erosion status of the river basin.For the detailed investigation of hydrological response freely available Cartosat-1... The key aspect in planning and management of water resources is to analyze the runoff potential and erosion status of the river basin.For the detailed investigation of hydrological response freely available Cartosat-1(IRS-P5) data was used for the preparation of digital elevation model(DEM).The runoff potential and type of erosive process of 22 river basins originating in the global biodiversity hotspot of Western Ghats,was inferred through hypsometric analysis.Several parameters like Hypsometric integral(HI),maximum concavity(Eh),coordinates of slope inflection point(I) given by a* and h* and normalized height of hypsometric curve(h) were extracted from the hypsometric curves and used for understanding the hydrological responses.From the hypsometric curves,the landform evolution processes were inferred.Contribution of diffusive and fluvial processes in slope degradation of the river basins was understood.Basins with lesser area(<100 km^2) were found to have a positive correlation between hypsometric integral and basin area,whereas for large basins no such correlation exists.Based on the study,river basins can be prioritized for the appropriate conservation measures. 展开更多
关键词 HYPSOMETRY Runoff potential Erosion status Cartosat-1 data River Basins
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Morphology, sedimentary characteristics, and origin of the Dongsha submarine canyon in the northeastern continental slope of the South China Sea 被引量:6
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作者 YIN ShaoRu WANG LiaoLiang +1 位作者 GUO YiQun ZHONG GuangFa 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第6期971-985,共15页
The Dongsha submarine canyon is a large canyon belonging to a group of canyons on the northeastern South China Sea margin Investigation of the Dongsha canyon is important for understanding the origin of this canyon gr... The Dongsha submarine canyon is a large canyon belonging to a group of canyons on the northeastern South China Sea margin Investigation of the Dongsha canyon is important for understanding the origin of this canyon group as well as the transport mechanism of sediments on the margin, and the evolution of the Taixinan foreland basin and the associated Taiwan orogenic belt. In this study, the morphology, sedimentary characteristics, and origin of the Dongsha canyon were investigated by inte- grating high-resolution multi-channel seismic reflection profiles and high-precision multibeam bathymetric data. This is a slope-confined canyon that originates in the upper slope east of the Dongsha Islands, extends downslope in the SEE direction, and finally merges with the South Taiwan Shoal canyon at a water depth of 3000 m. The total length and average width of the canyon are around 190 and 10 km, respectively. Eleven seismic sequence boundaries within the canyon fills were identified and interpreted as incision surfaces of the canyon. In the canyon fills, four types of seismic facies were defined: parallel onlap fill, chaotic fill, mounded divergent facies, and migrated wavy facies. The parallel onlap fill facies is interpreted as altemating coarser turbidites or other gravity-flow deposits and fine hemipelagic sediments filling the canyon valley. The chaotic fill faci- es is presumed to be debrites and/or basal lag deposits filling the thalwegs. The mounded divergent and migrated wavy seismic facies can be explained as canyon levees consisting mainly of overspilled fine turbidites and sediment waves on the levees or on the canyon-mouth submarine fans. Age correlation between the sequence boundaries and the ODP Site 1144 data suggests that the Dongsha canyon was initiated at approximately 0.9 Ma in the middle Pleistocene. Mapping of the canyon indicates that the canyon originated at the upstream portion of the middle reach of the modem canyon, and has been continuously expanding both upstream and downstream by retrogressive erosion, incision, and deposition of turbidity currents and other gravity transport processes. The ages of the sequence boundaries representing major canyon incision events are in good agreement with those of global sea-level lowstands, indicating that sea-level changes may have played an important role in the canyon's development. The Dongsha canyon developed in a region with an active tectonic background characterized by the Taiwan up- lifting and the development of the Taixinan foreland basin. However, no evidence suggests that the canyon formation is directly associated with local or regional faulting and magmatic activities. Turbidity currents and other gravity transport processes (includ- ing submarine slides and slumps) may have had an important influence on the formation and evolution of the canyon. 展开更多
关键词 Dongsha submarine canyon multibeam bathymetry seismic sequences seismic facies depositional elements South China Sea
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The effect of seafloor topography in the Southern Ocean on tabular iceberg drifting and grounding 被引量:1
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作者 LI Tian LIU Yan +7 位作者 CHENG Xiao OUYANG LunXi LI XinQing LIU JiPing Mohammed SHOKR HUI FengMing ZHANG Jing WEN JiaHong 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第4期697-706,共10页
Antarctic tabular icebergs are important active components in the ice sheet-ice shelf-ocean system.Seafloor topography is the key factor that affects the drifting and grounding of icebergs,but it has not been fully in... Antarctic tabular icebergs are important active components in the ice sheet-ice shelf-ocean system.Seafloor topography is the key factor that affects the drifting and grounding of icebergs,but it has not been fully investigated.This study analyzes the impact of seafloor topography on the drifting and grounding of Antarctic tabular icebergs using Bedmap-2 datasets and iceberg route tracking data from Brigham Young University.The results highlight the following points.(1) The quantitative distributions of iceberg grounding events and the tracking points of grounded icebergs are mainly affected by iceberg draft and reach their peak values in sea water with depths between 200 m and 300 m.The peak tracking point number and linear velocity of free-drifting icebergs are found in the Antarctic Slope Front(water depth of approximately 500 m).(2) The area of possible grounding regions of small-scale icebergs calved from ice shelf fronts accounts for 28%of the sea area at water depths less than 2000 m outside the Antarctic coastline periphery(3.62 million km2).Their spatial distribution is mainly around East Antarctica and the Antarctic Peninsula.The area of possible grounding regions of large tabular icebergs with long axes larger than 18.5 km(in water depths of less than 800 m) accounts for 74%of the sea area.(3) The iceberg drifting velocity is positively correlated with ocean depth in areas where the depth is less than 2000 m(R=0.85,P<0.01).This result confirms the effect of water depth variations induced by seafloor topography fluctuations on iceberg drifting velocity. 展开更多
关键词 Antarctica Land cover Remote sensing
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