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1.
海洋地理信息系统理论基础及其关键技术研究   总被引:21,自引:4,他引:17  
海洋地理信息系统(MGIS)具有时空处理的强大能力,并在应用上具有潜在优势.以提取海洋现象特征为例,对其在海洋科学中的位置和作用进行了剖析,进而比较分析了MGIS不同于陆地地理信息系统的特殊理论技术的需求,从而定义其功能体系结构.结合所构建的MGIS,详细阐述在本系统创建中主要的理论技术关键,由此展示MGIS对我国海洋调查、研究、资源开发和保护以及国防建设等工作具有的重要意义.  相似文献   

2.
Abstract

Geographic Information Systems (GIS) have been developed during the last decade. Their land‐based applications range from land information management, urban planning, and environmental research to engineering design and management in the utility and oil industries, geological subsurface analysis, and others. However, applications of GIS in the marine environment are still in the initial stages. This may be due to, among other things, the large marine data sets, the demands of 3D data processing, and the difficulty of ocean data acquisition.

This article presents the result of the development of an integrated Marine Geographic Information System (MGIS) for the exploration and development of the Exclusive Economic Zone (EEZ) in the U.S. Pacific Islands region by the Pacific Mapping Center, University of Hawaii. Features such as spatial marine data processing, integration of GIS and mapping systems, 3D data structures, and simulation and animation of marine operations are developed and applied in this system. Since MGIS applications in EEZ are related to many disciplines in marine sciences and engineering, an operational MGIS should be an integrated system in which both basic GIS and marine application systems are combined into a single geo‐referenced system, In addition to other applications, this MGIS has been used: (1) to select a potential deep‐water research site off the island of Hawaii for the State of Hawaii Department of Business, Economic, and Development (DBED); (2) to generate a three‐dimensional database and use it for the navigation and simulation of underwater operations of an underwater research vehicle; and (3) to produce two 2° × 2° mosaic sheets of sonar images, which meet the USGS standard for a sonar image atlas.  相似文献   

3.
Seismic oceanography is a new cross-discipline of reflection seismology and physical oceanography. The biggest difference between seismic oceanography and traditional reflection seismology is its research object of time-varied seawater. How to estimate the temporal variations of reflectors in water structure and make some corrections in seismic data are basic problems in seismic oceanography research. Here a method of estimation for seawater movement is provided based on the reflectors. The application results of this method to the simulated and field seismic data turn out to be acceptable. As compared with the previous research, this method has the advantages of low-dependence on migration velocity and dip of reflectors, and it is very suitable for correction in a spectral analysis using seismic data, which is very useful in the research of ocean energy budget.  相似文献   

4.
海洋地理信息系统(MGIS)研究进展   总被引:5,自引:1,他引:5  
海洋占全球面积的71%,21世纪是海洋开发的时候,其中海岸带及近海为开发利用的重点,海洋产业部门、沿海国家的各级政府及军事部门均需要快速获得有关海洋环境的综合信息和行为的决策依据。最近国际上出现的海洋地理信息系统(MGIS)已成为发展“数字海洋”的核心,通过MGIS的内涵基本功能,决策支持系统及应用实例介绍MGIS的应用前景。  相似文献   

5.
崔丽静  尚承金 《海洋地质前沿》2005,21(4):33-36,i002
地理信息系统是一门空间数据管理科学和智能化高新技术,它是由地理学、地图学、计算机科学、遥感技术、数学等相互作用相互交叉而形成的,有向数据自动化处理研究、数据结构研究、空间关系理论研究、人工智能和专家系统研究发展的趋势。在海洋地质中,地理信息系统目前主要应用于海底地形地貌模拟、海洋地质资料科学管理与共享、海洋地质资料处理等。随着全球尺度海洋学研究的进一步开展及海洋地理信息系统的产生,地理信息系统在海洋地质中的应用前景良好。  相似文献   

6.
一个基于TOPEX卫星极端海面风速预测的海洋地理信息系统   总被引:4,自引:1,他引:4  
在基于 TOPEX卫星数据建立全球极端海面风速预测模型的基础上 ,开发出用于极端海面风速预测和可视化预测结果的海洋地理信息系统 (MGIS)。并论述全球极端海面风速预测的意义和 MGIS在预测过程中的重要性及必要性 ;给出全球极端海面风速预测的统计模型 ;简述极端海面风速预测海洋地理信息系统的结构、工作流程和功能 ;同时 ,对系统的预测结果进行初步分析  相似文献   

7.
1 Introduction The GIS has shown great success for terrestrial ap- plicationsin the last decades, but its use in marine fields has been far more restricted. One of the main reasons is that most of the GIS systems or their data models are designed for land…  相似文献   

8.
李永祺  张鑫鑫 《海洋与湖沼》2021,52(5):1067-1074
海洋生态学和生物海洋学的研究内容大多交叉、重叠。为利于学科发展,文章在简述学科的产生与定义的基础上,强调学科之间要加强合作,适当分工。建议:海洋生态学侧重研究生物之间的相互关系和对环境的适应性、生存策略,并积极与经济、社会和文化相关学科交叉、融合;生物海洋学侧重于研究生物在海洋环境中的作用和功能,把推进对海洋的认识放在首位,加强与物理海洋学、化学海洋学的耦合,为海洋在地球四大圈层的相互关系中展现活力。据此,以渔业海洋学、海洋生态灾害和生物对地质的作用为例,阐述海洋生态学和生物海洋学的理解及其相互之间关系。  相似文献   

9.
修义瑞  李斌  刘忠 《海洋测绘》2009,29(4):64-66
利用专题地理信息系统(MGIS)应用开发接口,建立基于MGIS的海洋站实况显示系统,在通用的专题地理信息平台上,实现了海洋站实况信息与专题地理信息的融合显示与应用。可在数字地图上以符号及数值填图方式标绘海洋站实况中的填图要素信息,并可查询显示包括观测地点、观测时间在内的海洋站实况全部要素信息。  相似文献   

10.
舒王欣泽  孙军 《海洋通报》2020,39(5):581-593
iPath 是一个用于细胞路径可视化和代谢途径分析的免费网页应用程序。iPath 中的路径是通过交互式浏览器查看的,它提供各种代谢途径的直接导航,使人们能够方便地访问相关的化合物和酶。本文简要介绍了最新的 iPath3.0 版本 (http://pathways.embl.de) (基于 4 个 KEGG 的全局地图,158 个传统的 KEGG 路径图,192 个 KEGG 模板,以及其他代谢元素,组成了一个相互连接、手工绘制的代谢网络),并举例说明其在生物海洋学研究中的应用,以期引起国内学者对此工具的重视,促进其在生物海洋学研究中的应用。  相似文献   

11.
王永杰  王建丰  任强  于非  李芳 《海洋与湖沼》2017,48(6):1480-1487
光纤传感器技术已经在土木工程、航空航天、石油石化等方面得到应用,其温度、压力、流速传感日趋成熟,且具有本征绝缘、易于复用、远距离传输等优势,在物理海洋领域有较大的潜在应用。在先导专项的支持下,课题组完成了光纤温深传感器及其系统在海洋牧场遥测方面的实践应用,是光纤温度链在海洋养殖方面的应用创新,为现代海洋牧场的研制提供了技术支撑作用;课题组研制了船载拖曳温深链系统,并在北黄海和南海海域进行了温度跃层的快速高效海试应用,实时、连续、原位获取了水下温度剖面情况,该领域温度测量的首次试验应用,为物理海洋的科学研究提供了一种全新的快速、高时空密度的测量手段,将会推动物理海洋的科学研究和海洋仪器设备研发水平,具有一定的先导作用。  相似文献   

12.
研究海水温盐结构的反射地震方法   总被引:2,自引:1,他引:1  
在物理海洋学的研究中,利用CTD(Conductivity, Temperature and Depth sensors)测量方法研究海水温盐结构存在着获取数据时间长、数据横向精度低的缺点,而利用反射地震记录可以获得剖面上连续的水体温盐结构,弥补了传统方法的不足.反射地震方法研究海水温盐结构是个新的交叉学科方法,称为"地震海洋学".由于海水水体的物性变化比地层物性变化小得多,造成海水水体的反射地震资料信噪比很低,各类干扰强烈,因而海水水体的反射地震资料处理也和常规地震资料处理方法有所不同.它处理的重点是振幅补偿,叠前去噪以及叠后处理.笔者通过对"十五"973项目在南海东北部采集的一条高分辨率多道反射地震测线的海水水体部分的地震数据进行处理,压制了强线性干扰波,获得了水体反射图像.地震叠加速度分析获取的3个CDP (Common Depth Point)的垂向速度从1540 m·s-1单调减小到1478 m·s-1,与CTD测量得到的速度变化趋势一致.  相似文献   

13.
The SARAL/AltiKa project is based on a single Ka band altimeter (35.75 GHz), which is the first oceanography altimeter to operate at such a high frequency. Ka band offers reduced radar footprint in comparison to traditional Ku band altimeters and negligible ionospheric effects. In this paper we present and evaluate benefits of AltiKa altimeter applied in the study of lakes in Andean chain in South America. Water levels time series obtained with Envisat/RA-2 and SARAL/AltiKa altimeters over 17 lakes of various sizes are calculated and compared to in situ observations. SARAL/AltiKa measurements tend to be extremely well correlated with in situ measurements and offer significant improvements compared to the Envisat mission.  相似文献   

14.
通过简要回顾半个世纪以来海洋雷达技术发展历程的特点和规律,结合海洋雷达技术发展现状,介绍海洋雷达涉及的关键技术并进行应用场景分析。总结我国海洋雷达技术近30 a来的发展及其与国际水平的主要差距,提出"十三五"期间我国海洋雷达技术优先发展项目的建议,即超视距雷达广域海洋监测技术、浮动/机动平台高分辨率海洋雷达技术、新体制微波海洋雷达技术以及海洋雷达数据管理与应用技术等。  相似文献   

15.
Automated identification and tracking of mesoscale ocean eddies has recently become one research hotspot in physical oceanography. Several methods have been developed and applied to survey the general kinetic and geometric characteristics of the ocean eddies in the South China Sea(SCS). However, very few studies attempt to examine eddies' internal evolution processes. In this study, we reported a hybrid method to trace eddies' propagation in the SCS based on their internal structures, which are characterized by eddy centers, footprint borders, and composite borders. Eddy identification and tracking results were represented by a GIS-based spatiotemporal model. Information on instant states, dynamic evolution processes, and events of disappearance, reappearance, split, and mergence is stored in a GIS database. Results were validated by comparing against the ten Dongsha Cyclonic Eddies(DCEs) and the three long-lived anticyclonic eddies(ACEs) in the northern SCS, which were reported in previous literature. Our study confirmed the development of these eddies. Furthermore, we found more DCE-like and ACE-like eddies in these areas from 2005 to 2012 in our database. Spatial distribution analysis of disappearing, reappearing, splitting, and merging activities shows that eddies in the SCS tend to cluster to the northwest of Luzon Island, southwest of Luzon Strait, and around the marginal sea of Vietnam. Kuroshio intrusions and the complex sea floor topography in these areas are the possible factors that lead to these spatial clusters.  相似文献   

16.
70年来中国化学海洋学研究的主要进展   总被引:5,自引:3,他引:2  
我国的海洋化学工作者通过70年来,特别是近30年来的化学海洋学研究,实现了我国与世界先进水平进入同步发展的快车道,其显著的特点是:(1)化学海洋学研究从元素地球化学分布系统转向了以揭示深层次海洋生物地球化学过程为核心的研究;(2)化学海洋学研究实现了多领域、多视点的综合交叉研究;(3)更加关注了人为影响与自然变化共同作用下的海洋生态环境变化研究,对近海和海岸带而言,更加注重从海陆统筹一体化角度探析化学物质的分布迁移特征。本文从生源要素的海洋生物地球化学过程、微/痕量元素与同位素的海洋化学研究、生物过程作用下的化学海洋学过程等角度,重点总结归纳和分析了30年来我国海洋化学研究的重要进展和发展状况,以期对化学海洋学的进一步研究提供借鉴和启迪。  相似文献   

17.
孙元福  郑全安 《海洋学报》1981,3(3):400-409
所有物体都不断地发出电磁辐射,在微波谱段内黑体的辐射量Bbb可用瑞利—金斯公式表示:Bbb=2KT/λ2。  相似文献   

18.
The India-France SARAL/AltiKa mission is the first Ka-band altimetric mission dedi-cated to oceanography. The mission objectives are primarily the observation of the oceanic mesoscales but also include coastal oceanography, global and regional sea level monitoring, data assimilation, and operational oceanography. Secondary objectives include ice sheet and inland waters monitoring. One year after launch, the results widely confirm the nominal expectations in terms of accuracy, data quality and data availability in general.

Today's performances are compliant with specifications with an overall observed performance for the Sea Surface Height RMS of 3.4 cm to be compared to a 4 cm requirement. Some scientific examples are provided that illustrate some salient features of today's SARAL/AltiKa data with regard to standard altimetry: data availability, data accuracy at the mesoscales, data usefulness in costal area, over ice sheet, and for inland waters.  相似文献   

19.
孙松  孙晓霞 《海洋与湖沼》2020,51(4):684-694
中国科学院海洋研究所是从一个海洋生物实验室发展起来的综合性海洋研究机构,生物海洋学的理念、科学内涵、科学视野、生物海洋学对海洋科学发展的推动作用等在海洋研究所的发展历程中得到完美体现,生物海洋学也一直伴随整个研究所的壮大而不断发展。在中国科学院海洋研究所成立70周年之际,从生物海洋学角度回顾研究所发展历程,将会加深我们对海洋科学不同学科间的相互关系、相互配合、学科交叉、融合发展的意义的理解,对海洋科学未来发展起到积极推动作用。  相似文献   

20.
Many of the sampling methods used in oceanographic sciences today date back decades, if not centuries. Although there has been a marked change in how sampling for chemical oceanography is carried out it still relies on taking samples of seawater from a research vessel in most cases. Assessing processes on small timescales as well as transient events requires higher temporal and spatial resolution of measurements; long time series stations require high duration deployments of instruments. Both requirements can only be adequately satisfied by in situ sensors; for the physical parameters off the shelf instruments are available, in the field of chemical oceanography only a few parameters, such as oxygen, are covered by off the shelf instruments, for most parameters adequate instrumentation only exists in the form of prototypes, if at all. Chemical in situ sensors are needed to gain new insights in how the oceans and the life in it works.  相似文献   

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