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The NTU buoy for typhoon observation, part 1: System: NTU buoy for typhoon: System

机译:用于台风观测的NTU浮标,第1部分:系统:用于台风的NTU浮标:系统

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摘要

For a better understanding of the air-sea interactions that occur during typhoons and improved accuracy in typhoon forecasting, the Institute of Oceanography at the National Taiwan University has developed a buoy that can measure meteorological and hydrographic conditions, and transmit the high-precision data in near real-time. The buoy captures various types of meteorological data, including air temperature, air pressure, relative humidity, wind speed and direction, rainfall, and solar radiation. Additionally, the buoy measures key hydrographic data, such as the temperature and salinity profiles of the upper 500-m water layer. The newly designed of buoy system is a low-power-consumption system and it can be in sleep mode between successive samplings to save power energy. The buoy is supplied electric power by lithium batteries and it can support buoy operation for more than 18 months. The sampling interval and data transmission rate are adjustable via Iridium satellite or UHF radio communications. When a typhoon approaching buoy, the operator can transmit a command to buoy via Internet/Iridium satellite communications to change data transmission rate from standard mode to intensive mode. In addition, the raw data can be retrieved through UHF radio communication between the buoy and a nearby ship. A prototype and two improved buoys were deployed off southeastern Taiwan for trial in summers of 2015 and 2016, respectively. These buoys survived nine typhoons and successfully collected important data on all nine of them. The detail of buoy system and mooring design are presented in this paper.
机译:为了更好地了解台风期间发生的海-气相互作用并提高台风预报的准确性,国立台湾大学海洋研究所开发了一个浮标,可以测量气象和水文状况,并在海底传输高精度数据。接近实时。浮标捕获各种类型的气象数据,包括气温,气压,相对湿度,风速和风向,降雨量和太阳辐射。此外,浮标还测量关键的水文数据,例如上部500米水层的温度和盐度剖面。新设计的浮标系统是一种低功耗系统,可以在两次采样之间处于睡眠模式,以节省电能。浮标由锂电池供电,可以支持浮标运行超过18个月。采样间隔和数据传输速率可通过铱星或UHF无线电通信进行调整。当台风逼近浮标时,操作员可以通过互联网/铱星卫星通信向浮标发送命令,以将数据传输速率从标准模式更改为密集模式。此外,原始数据可以通过浮标和附近船只之间的UHF无线电通信进行检索。原型机和两个改进的浮标分别在2015年和2016年夏季在台湾东南部部署,以进行试验。这些浮标在9个台风中幸存下来,并成功收集了所有9个台风的重要数据。本文介绍了浮标系统和系泊设计的细节。

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