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1)  Argo profiling float
Argo剖面浮标
1.
Observing process of an Argo profiling float and discussion on its data application;
一个Argo剖面浮标的观测过程及其资料应用探讨
2.
The effect of reference dataset on calibration of Argo profiling float salinity data;
参考数据集对Argo剖面浮标盐度观测资料校正的影响
3.
The temperature and salinity distributions,and the water mass structures in the area of Northwest Pacific Ocean are studied using the temperature and salinity data obtained by Argo profiling floats.
应用Argo剖面浮标观测的温、盐度资料,分析了西北太平洋海域冬、夏季的温、盐度分布、水团结构及其分布。
2)  ARGO floats
ARGO浮标
1.
The temperature and salinity profiles of the ARGO floats in the warm pool of the northwestern Pacific were analyzed.
分析了西北太平洋暖池区2002和2003年夏季ARGO浮标得到的次表层温度和盐度剖面,结果表明大多数台风经过暖池区时,会引起海面盐度下降,这与Kwon和Riser等在大西洋观测到的飓风过后海面盐度上升的结论不同,表明西北太平洋暖池区特有的上层结构以及台风在此海域的降雨与大西洋不同,结果对研究西北太平洋暖池区的混合层混合和热交换过程有重要意义。
3)  Argo float
Argo浮标
1.
A dataset of 4 Argo floats deployed in the South China Sea (SCS) was analyzed for understanding the circulation and temperature-salinity (T/S) profiles in the upper ocean in the SCS, with emphasis on trajectory, T/S structure, and drifting velocity.
对投放在南海内部的4个Argo浮标轨迹特征,温、盐结构及漂移速度进行诊断分析发现,Argo浮标剖面温、盐观测结果和气候态资料一致,同时上层海洋温、盐剖面资料表现出周期约2月的扰动信号,并且温跃层起伏与同期海表高度异常相关显著。
2.
Based on the principle about the operating and measuring character of the ARGO float, we analyse the main error source in estimating the mid-depth current by the floats, as follows: the first is drifting on.
根据ARGO浮标工作原理和实际浮标资料的特点,分析了在提取中层海流过程中的主要误差来源:1)浮标观测循环过程中,下潜开始(上浮结束)时刻与末次(首次)定位时刻之间的表面漂流;2)浮标下潜(上浮)过程中垂直流切变;3)卫星定位误差以及浮标实际水下漂流的深度等等,有针对性地提出了较严格的质量控制方案。
4)  profiling float
剖面浮标
1.
Several underwater observing technique for military and Navy-civil dual-use,such as autonomous profiling float,underwater vehicle and underwater autonomous survey platform etc developed by foreign countries in recent years is summarized.
综述了近年来国外重点发展的自持式剖面浮标、水下滑翔器、水下自航式观测平台等几种军民两用的海洋水下观测高新技术,分析了它们的特点和关键技术。
5)  Argo floats data
Argo浮标数据
6)  section detection buoy
剖面探测浮标
1.
It is introduced the development progress of section detection buoy technique , the discussing of key technique of sea section detection buoy , the studying of self control section detection buoy and its application foreground in our country .
本文简述了剖面探测浮标技术的发展过程,讨论了剖面探测浮标的主要关键技术,介绍了我国正在研制中 的自持式剖面探测浮标及其应用前景。
补充资料:关于solidworks 中的剖面线中的剖面线

solidworks的剖面线线型定义和autocad相同,它使用了autocad的剖面线定义方法,与autocad通用.因此,可以对剖面线进行定义.


方法:修改\SolidWorks\lang\chinese-simplified\sldwks.prn


用笔记本打开该文件,添加需要的线形.如


;; Based on AutoCAD Ver.13.0s Hatch Pattern File


;;;; solidworks 区域剖面线定义文件 ::


*金属, (Iron BrickStone), ANSI Iron, Brick, Stone masonry


45, 0,0, 0,.125


*塑料, (Lead Zinc Mg), ANSI Lead, Zinc, Magnesium, Sound/Heat/Elec Insulation


45, 0,0, 0,.125


135, 0,0, 0,.125


*玻璃,AR-GLASS@1.0


45,0,0,0,0.5, 0.5,-0.5


45,0,0.1414214, 0,0.5, 0.3,-0.7


45,0.1414214,0, 0,0.5, 0.3,-0.7


*软木, Cork material@1.0


0, 0,0, 0,.125


135, .0625,-.0625, 0,.35355339, .176776696,-.176776696


135, .09375,-.0625, 0,.35355339, .176776696,-.176776696


135, .125,-.0625, 0,.35355339, .176776696,-.176776696


*无, None


删除不需要的定义类型,可以大大提高solidworks 的启动速度

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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