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Distributed system for remote wave data collection and visualization as a part of operational oceanography in Croatia

机译:分布式数据采集和可视化远程系统,作为克罗地亚业务海洋学的一部分

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Hydrographic Institute of the Republic of Croatia (HHI) has modernised its oceanographic equipment buying new DATAWELL DWR-MkIII Waverider, with possibilities of measuring the wave height, direction and period. Waverider buoy deployed in the survey sea area is anchored at the sea bottom. An anchored waverider buoy has a certain freedom of motion. Due to a risk of losing the buoy, HHI has developed the SMS (Short Message Service) based system for alarm and graphic representation of the buoy motion using Google Earth™ application to facilitate the buoy tracking and searching in case of its loss. The paper also describes communication technologies and methods of remote data collection and production of safety copies. In addition, sensor for measurement of wind speed and direction is usually installed in the survey area concurrently to wave measurements. By simultaneous collection of the waverider data and the wind direction and speed data, the correlation between parameters can be analysed for each survey area. The measured and analysed waverider data are essential input parameters for numerical oceanographic models, important for designing coastal and marine structures, as well as for improving the safety of navigation at sea.
机译:克罗地亚共和国水文研究所(HHI)通过购买新的DATAWELL DWR-MkIII Waverider对其海洋学设备进行了现代化改造,并具有测量波高,方向和周期的可能性。部署在调查海域的Waverider浮标固定在海底。锚定的乘浪人浮标具有一定的运动自由度。由于存在丢失浮标的风险,HHI开发了基于SMS(短消息服务)的系统,使用Google Earth™应用程序来对浮标运动进行警报和图形表示,以在浮标丢失时促进浮标的跟踪和搜索。本文还描述了远程数据收集和安全副本生成的通信技术和方法。另外,通常在测量区域中与波浪测量同时安装用于测量风速和风向的传感器。通过同时收集波轮飞行器数据以及风向和速度数据,可以为每个调查区域分析参数之间的相关性。测得的和分析的乘波谱仪数据是数字海洋学模型的基本输入参数,对于设计沿海和海洋结构以及提高海上航行的安全性非常重要。

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