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水火弯板数据库系统设计 总被引:2,自引:1,他引:1
本文简述水火弯板变形原理,以及船板局部变形和整体变形的测试方法。在分析实船板的水火成形数据库系统数据结构基础上,给出了系统模块的设计功能和系统运行环境。 相似文献
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J.F. Shriver H.E. Hurlburt O.M. Smedstad A.J. Wallcraft R.C. Rhodes 《Journal of Marine Systems》2007,65(1-4):3
A 1/32° global ocean nowcast/forecast system has been developed by the Naval Research Laboratory at the Stennis Space Center. It started running at the Naval Oceanographic Office in near real-time on 1 Nov. 2003 and has been running daily in real-time since 1 Mar. 2005. It became an operational system on 6 March 2006, replacing the existing 1/16° system which ceased operation on 12 March 2006. Both systems use the NRL Layered Ocean Model (NLOM) with assimilation of sea surface height from satellite altimeters and sea surface temperature from multi-channel satellite infrared radiometers. Real-time and archived results are available online at http://www.ocean.nrlssc.navy.mil/global_nlom. The 1/32° system has improvements over the earlier system that can be grouped into two categories: (1) better resolution and representation of dynamical processes and (2) design modifications. The design modifications are the result of accrued knowledge since the development of the earlier 1/16° system. The improved horizontal resolution of the 1/32° system has significant dynamical benefits which increase the ability of the model to accurately nowcast and skillfully forecast. At the finer resolution, current pathways and their transports become more accurate, the sea surface height (SSH) variability increases and becomes more realistic and even the global ocean circulation experiences some changes (including inter-basin exchange). These improvements make the 1/32° system a better dynamical interpolator of assimilated satellite altimeter track data, using a one-day model forecast as the first guess. The result is quantitatively more accurate nowcasts, as is illustrated by several model-data comparisons. Based on comparisons with ocean color imagery in the northwestern Arabian Sea and the Gulf of Oman, the 1/32° system has even demonstrated the ability to map small eddies, 25–75 km in diameter, with 70% reliability and a median eddy center location error of 22.5 km, a surprising and unanticipated result from assimilation of altimeter track data. For all of the eddies (50% small eddies), the reliability was 80% and the median eddy center location error was 29 km. The 1/32° system also exhibits improved forecast skill in relation to the 1/16° system. This is due to (a) a more accurate initial condition for the forecast and (b) better resolution and representation of critical dynamical processes (such as upper ocean – topographic coupling via mesoscale flow instabilities) which allow the model to more accurately evolve these features in time while running in forecast mode (forecast atmospheric forcing for the first 5 days, then gradually reverting toward climatology for the remainder of the 30-day forecast period). At 1/32° resolution, forecast SSH generally compares better with unassimilated observations and the anomaly correlation of the forecast SSH exceeds that from persistence by a larger amount than found in the 1/16° system. 相似文献
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65Mb/s顽存式综合业务光纤环形数字网 总被引:1,自引:0,他引:1
舰载65Mb/s存式综合业务光纤环形网采用TDM传输和混合交换方式,具有面向ISDN的S0、S2接口和ETHERNET接口。它不仅具有高的可靠性与顽存性,而且以通信和传输一体化为设计目标,能够舰船内部诉所有要求和数据与视频传输的需求。本文重点介绍了该网的组成、帧结构、重配功能和用户-网络接口,并描 适应更大规模容量的多环网结构。 相似文献
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介绍了一种便携式多通道、高精度温度检测数据采集系统。系统采用PT1000铂电阻作温度传感器,DI-720EN作为便携式数据采集器,上位PC机采用笔记本电脑。本系统具有精度高、速度快,扩展性好等特点。 相似文献
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