five

In situ, meteorological, navigational, physical and profile data collected by US DOC; NOAA; NWS; National Data Buoy Center at OceanSITES site T2N180W from 2006-08-25 to 2016-03-06 (NCEI Accession 0130848)

收藏
DataONE2016-03-24 更新2024-06-26 收录
下载链接:
https://search.dataone.org/view/{FC0BCF70-BEBF-496A-858F-A100BAC3247E}
下载链接
链接失效反馈
官方服务:
资源简介:
In situ, meteorological, navigational, physical and profile oceanographic data were collected, including AIR TEMPERATURE, DEPTH - OBSERVATION, HYDROSTATIC PRESSURE, LATITUDE, LONGITUDE, RELATIVE HUMIDITY, SALINITY, SEA SURFACE TEMPERATURE, SIGMA-THETA, WATER TEMPERATURE, WIND DIRECTION and WIND SPEED from Moored Buoy at the TAO/TRITON Site 2N 180W (T2N180W) using GPS, anemometer, conductivity sensor, meteorological sensors, pressure sensors and thermistor from 2006-08-25 to 2016-03-06. These data were provided to one of the OceanSITES Data Assembly Centers (DAC). The DAC formatted this information into the OceanSITES file format and passed it on to the Global Data Assembly Centers (GDAC). OceanSITES is a worldwide system of long-term, open-ocean reference stations measuring dozens of variables and monitoring the full depth of the ocean from air-sea interactions down to the seafloor. It is a network of stations or observatories measuring many aspects of the ocean's surface and water column using, where possible, automated systems with advanced sensors and telecommunications systems, yielding high time resolution, often in real-time, while building a long record.

本数据集涵盖原位、气象、导航、物理海洋及剖面海洋学观测数据,采集自TAO/TRITON站点2N 180W(T2N180W)处的锚定浮标(Moored Buoy),观测时段为2006年8月25日至2016年3月6日。所用观测设备包括GPS、风速风向仪(anemometer)、电导率传感器(conductivity sensor)、气象传感器、压力传感器及热敏电阻(thermistor)。所包含的观测变量有:气温、观测水深、静水压力、纬度、经度、相对湿度、盐度、海表温度、西格玛θ(SIGMA-THETA,位势密度距平)、水温、风向及风速。上述数据被提交至OceanSITES数据汇编中心(Data Assembly Centers, DAC)之一,该中心将数据格式化为OceanSITES标准文件格式后,转交给全球数据汇编中心(Global Data Assembly Centers, GDAC)。 OceanSITES是一套全球性长期远洋参考站系统,可观测数十项海洋环境变量,监测覆盖从海-气相互作用直至海底的全海洋深度剖面。该系统由一系列观测站或观测台站组成,尽可能采用搭载先进传感器与通信系统的自动化观测设备,对海洋表层及水体柱的多项参数开展观测,可实现高时间分辨率的观测(多数情况下为实时观测)并积累长期连续的观测序列。
创建时间:
2016-03-24
二维码
社区交流群
二维码
科研交流群
商业服务