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421.
介绍了我国船型海洋资料浮标浮标体和锚泊系统的设计方案 ,该浮标可适用于远海、深海海域布放 ,定点实时获取布放海域的水文、气象等有关要素的现场参数 相似文献
422.
介绍了我国自行研制的最新一代用于海洋环境监测的大型FZF3—1型海洋资料浮标系统,论述了该系统的总体技术结构、原理和性能,以及应用PC—104微机作为浮标数据采集控制系统的情况。 相似文献
423.
Argo drifters provide information of the vertical structure in the water column and have a potential for the improvement of
understanding phytoplankton primary production and biogeochemical cycles in combination with ocean color satellite data, which
can obtain the horizontal distribution of phytoplankton biomass in the surface layer. Our examples show that using Argo drifters
with satellite-measured horizontal distribution of phytoplankton biomass at the sea surface allow an improved understanding
of the development of the spring bloom. The other possible uses of Argo drifter are discussed. 相似文献
424.
水质监测浮标示范区试验 总被引:1,自引:0,他引:1
本文介绍了863-818支持研究的最新成果“近海污染/生态环境自动监测装置(水质监测浮标)”在镇海示范区试验的情况和数据分析结果,对各测量要素使用的水质分析仪和传感器的特点和不足进行了简单的介绍。 相似文献
425.
Temporal variability of winter mixed layer in the mid-to high-latitude North Pacific 总被引:1,自引:2,他引:1
Temperature and salinity data from 2001 through 2005 from Argo profiling floats have been analyzed to examine the time evolution
of the mixed layer depth (MLD) and density in the late fall to early spring in mid to high latitudes of the North Pacific.
To examine MLD variations on various time scales from several days to seasonal, relatively small criteria (0.03 kg m−3 in density and 0.2°C in temperature) are used to determine MLD. Our analysis emphasizes that maximum MLD in some regions
occurs much earlier than expected. We also observe systematic differences in timing between maximum mixed layer depth and
density. Specifically, in the formation regions of the Subtropical and Central Mode Waters and in the Bering Sea, where the
winter mixed layer is deep, MLD reaches its maximum in late winter (February and March), as expected. In the eastern subarctic
North Pacific, however, the shallow, strong, permanent halocline prevents the mixed layer from deepening after early January,
resulting in a range of timings of maximum MLD between January and April. In the southern subtropics from 20° to 30°N, where
the winter mixed layer is relatively shallow, MLD reaches a maximum even earlier in December–January. In each region, MLD
fluctuates on short time scales as it increases from late fall through early winter. Corresponding to this short-term variation,
maximum MLD almost always occurs 0 to 100 days earlier than maximum mixed layer density in all regions. 相似文献
426.
Yuji Kashino Iwao Ueki Yoshifumi Kuroda Andri Purwandani 《Journal of Oceanography》2007,63(4):545-559
We investigated variability in the ocean surface-subsurface layer north of New Guinea using Triangle Trans-Ocean Buoy Network (TRITON) buoys at 2°N, 138°E and 0°N, 138°E during the period from October 1999 to July 2004. Both North and South Pacific waters were observed below the subsurface at these stations. The variability in the subsurface waters was particularly high at 2°N, 138°E. Clear interannual variability occurred near the surface; the water type differed before and after onset of the 2002–03 El Niño. Before summer 2001, water that appeared to be advected from the central equatorial Pacific occupied the near surface layer. After autumn 2001, waters advected by the New Guinea Coastal Current were observed near the surface. Intraseasonal and seasonal variations were also observed below the subsurface. With regard to seasonal variability, the salinity of the subsurface saline water, the South Pacific Tropical Water, was generally high during the boreal summer-autumn, when the New Guinea Coastal Undercurrent was strong. Intraseasonal fluctuations on a scale of 20 to 60 days were also seen and may have been associated with intrinsic oceanic variability, such as ocean eddies, near the stations. Ocean variability in the thermocline layer between 100 and 200 m greatly affects the surface dynamic height variability; water variability before 2001 and variability in the pycnocline depth after 2002 are important factors affecting the thermocline. 相似文献
427.
《海洋技术学报》2024,(1)
为了分析台风影响下浙江沿海风和浪的演变特点,利用浙江省海洋浮标站监测数据和欧洲中期天气预报中心第五代全球气候大气再分析数据(European Centre for Medium-Range Weather Forecasts Reanalysis v5,ERA5),选取2010年以来严重影响浙江的7次台风个例,对台风作用下浙江沿海海面风和浪的演变特点进行分析。结果表明:在台风影响过程中,海浪波型多数呈现混合浪-风浪-混合浪的演变规律;涌浪波型的出现与台风强度及其与浮标站的距离和方位有关,也与海洋潮汐现象紧密相关。台风影响期间,浙江沿海浪高的变化受风速和风向共同作用影响。在风向不变的情况下,持续风速增大对浪高的增大有明显作用;风向的变化也会对浪高变化产生影响,向岸风和离岸风的转变会造成浪高出现剧烈变化。ERA5 再分析资料有效波高在台风浪较大时会呈现偏小的趋势,分析订正后的ERA5 有效波高发现,台风浪有效波高大值区与台风中心位置相关。研究结果可为严重影响浙江沿海的台风浪预报服务提供参考。 相似文献
428.
应用漂流浮标,结合卫星高度计资料和示踪粒子法,研究了中国南海中尺度涡的输运能力。从浮标漂流轨迹和对应的流场分布可知在真实海洋中存在涡对物质的输运,陷入反气旋涡的漂流浮标跟随涡旋顺时针打转4圈,以圆弧形轨迹运动至海南岛以东。进一步通过示踪粒子法进行长期模拟得出涡内物质会以和涡相同的旋转方向旋转前进,在忽略水平方向上的混合对示踪粒子轨迹影响的情况下,在第55天,93%的质点(153个)将跟随涡旋运动,7%的质点(11个)会在中途与涡旋分离,运动中涡会不断把内部物质甩向涡的外缘,质点会从涡最边缘速度由大转小处脱离涡旋,但是大多数质点会跟随涡旋在其边缘以圆弧形轨迹向前运动,并最终稳定在涡旋的最边缘。 相似文献
429.
介绍了基于手机短信的气象观测浮标数据库查询及报警系统的原理、硬件组成及软件开发。气象观测浮标通过北斗通讯将气象数据传输到指定计算机存储,系统实时监测定位信息、气象要素和接收短信命令,并将报警信息和命令响应通过短信发送至指定手机,达到实时掌握浮标状态的目的。在实际项目应用中,取代了人员值班,保证了报警实时性,达到了预期的效果。 相似文献
430.