e-航海架构的高精度动态水深服务实现High resolution dynamic depth service realization of e-Navigation architecture
张安民;杜佳芸;王蕊;张永兵;
摘要(Abstract):
海水深度是影响船舶安全航行的重要因子,以往在航海中一般通过查询海图水深和潮汐表相结合的方法来掌握实时的通航水深。针对水深精度低等问题,该文设计了一种联合FVCOM潮汐数值模式以及余水位信息的动态水深模型,并通过对e-航海技术架构、MSP开发规则的研究,利用ASM和XML标准格式进行信息交互,提出并实现了一种高精度动态水深服务方法。结果证明,该方法满足《潮汐表》潮汐预报精度要求和IHO S-44水深精度要求,改变了传统的水深应用模式,提高了系统互操作性。
关键词(KeyWords): e-航海;FVCOM;余水位;动态水深;潮汐预报
基金项目(Foundation): 天津市科技支撑计划项目(2015F3-0004)
作者(Author): 张安民;杜佳芸;王蕊;张永兵;
Email:
DOI: 10.16251/j.cnki.1009-2307.2018.07.023
参考文献(References):
- [1]IMO.NAV 59/6.Development of an e-Navigation strategy implementation plan:report of the correspondence group on e-Navigation[R].Norway:IMO,2013.
- [2]IMO.NAV 57/6.Development of an e-Navigation strategy implementation plan:report of the correspondence group on e-Navigation to NAV 57[R].London:IMO,2011.
- [3]IALA.ENAV 21.Maritime service portfolios:digitising maritime services[R].France:IALA,2017.
- [4]孟德润,田光耀,刘雁春.海洋潮汐学[M].北京:海潮出版社,1993.(MENG Derun,TIAN Guangyao,LIU Yanchun.Ocean tide[M].Beijing:Haichao’s Publishing House,1993.)
- [5]IHO.S-112:Metorological and hydrographic data AIS application-specific message dynamic water level data product specification draft 0.0.0[S].Monaco:The International Hydrographic Bureau,2014.
- [6]NOAA PORTS.Physical oceanographic real-time system[EB/OL].(2013-06-28)[2017-09-10].http:∥www.nws.noaa.gov/om/marine/ports.html.
- [7]ZHANG L H,ZHOU C H,SU F Z,et al.A method to construct instantaneous depth model based on a grid tidal model and chart data[R].Beijing:International Symposium on Digital Earth:Data Processing&Applications,2009.
- [8]许军,暴景阳,刘雁春,等.基于POM模式与blending同化法建立中国近海潮汐模型[J].海洋测绘,2008,28(6):15-17.(XU Jun,BAO Jingyang,LIU Yanchun,et al.A regional tide model around China developed by POM and blending assimilation method[J].Hydrographic Surveying and Charting,2008,28(6):15-17.)
- [9]曹鸿博,张立华,赵巍,等.高精度瞬时水深模型的一种构建方法[J].测绘学报,2010,35(4):111-113.(CAO Hongbo,ZHANG Lihua,ZHAO Wei,et al.A method of constructing a high-precision instantaneous depth model[J].Science of Surveying and Mapping,2010,35(4):111-113.)
- [10]张安民.e-航海中的动态信息服务若干关键技术研究[D].武汉:武汉大学,2013.(ZHANG Anmin.Research on some key techniques of dynamic information services in e-Navigation[D].Wuhan:Wuhan University,2013.)
- [11]管明雷,黄辰虎,李清泉,等.利用水位修正模型精化潮位数值模拟[J].测绘通报,2017(6):68-71.(GUAN Minglei,HUANG Chenhu,LI Qingquan,et al.Improvement of tidal level numerical simulation based on water level correction model[J].Bulletin of Surveying and Mapping,2017(6):68-71.)
- [12]DESPINA D,KOSTAS P.Spatial interpolation methodologies in urban air pollution modeling:application for the greater area of metropolitan Athens,Greece[J/OL].[2015-08-07].http:∥www.intechopen.com/books/advanced-air-pollution/spatial-interpolationmethodologies-in-urban-air-pollution-modeling-application-for-the-greater-area.
- [13]海道测量规范:GB12327—1998[S].北京:中国标准出版社,1999.(Specifications for hydrographic survey:GB 12327—1998[S].Beijing:Standards Press of China,1999.)
- [14]CHEN C,LIU H,BEARDSLEY R C.An unstructured grid,finite-volume,three-dimensional,primitive equations ocean model:application to coastal ocean and estuaries[J].Journal of Atmospheric and Oceanic Technology,2003(20):159-186.
- [15]MELLOR G L.Users guide for a three-dimensional,primitive equation,numerical ocean model[J].Princeton University,2002,17(1):1.
- [16]IHO Standards for hydrographic surveys edition5.0.0:IHO.S-44[S].Monaco:The International Hydrographic Bureau,2008.
- [17]刘雷,董玉磊,曲萌,等.基于潮汐模型与余水位监控法的实例分析[J].海洋测绘.2015,35(4):36-39.(LIU Lei,DONG Yulei,QU Meng,et al.Example analysis based on tide model and residual water level monitoring method[J].Hydrographic Surveying and Charting,2015,35(4):36-39.)
- [18]刘军.余水位的主要特性分析及其在海洋测绘中的应用[J].测绘通报,2013(9):105-114.(LIU Jun.Analysis of the main characteristics of residual water level and its application in the marine survey[J].Bulletin of Surveying and Mapping,2013(9):105-114.)
- [19]唐岩,暴景阳,许军.余水位的内插及其对潮高模型的精化[J].测绘科学,2007,32(6):94-95.(TANG Yan,BAO Jingyang,XU Jun.The interpolation of residual water level and it’s refining to tidal model[J].Science of Surveying and Mapping,2007,32(6):94-95.)
- [20]赵祥鸿,暴景阳.余水位时变统计规律分析及水位预报方法改进[J].海洋测绘,2017,37(3):36-39.(ZHAO Xianghong,BAO Jingyang.Time-varing statistical regulary of residual water level and improved method of water level predicting[J].Hydrographic Surveying and Charting,2017,37(3):36-39.)
- [21]Technical characteristics for a universal shipborne automatic identification system using time division multiple access in the VHF maritime mobile band:ITU.ITU-R M.1371.5[S].Geneva:ITU,2015.
- [22]IALA.The support of the Common Shore-based System Architecture(CSSA)for the Maritime Service Portfolios(MSPs)and for the“Maritime Cloud”[R].France:IALA,2015.
- [23]Universal hydrographic data model edition3.0.0:IHO.S-100[S].Monaco:The International Hydrographic Bureau,2016.
- [24]IHO.Progress report of S-100 and relationship between S-100and E-Navigation[R].[S.l.]No.44Circular,2011.